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LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper...

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Corporate Office : CAREER INSTITUTE, “SANKALP”, CP-6, Indra Vihar, Kota (Rajasthan)-324005 +91-744-5156100, 5162200 [email protected] www.dlp.allen.ac.in, dsat.allen.ac.in 1. A seat marked with Reg. No. will be allotted to each student. The student should ensure that he/she occupies the correct seat only. If any student is found to have occupied the seat of another student, both the students shall be removed from the examination and shall have to accept any other penalty imposed upon them. 2. Duration of Test is 3 Hours and Questions Paper Contains 180 Questions. The Max. Marks are 720. 3 180 720 3. Student can not use log tables and calculators or any other material in the examination hall. 4. Student must abide by the instructions issued during the examination, by the invigilators or the centre incharge. 5. Before attempting the question paper ensure that it contains all the pages and that no question is missing. 6. Each correct answer carries 4 marks, while 1 mark will be deducted for every wrong answer. Guessing of answer is harmful. 1 7. A candidate has to write his / her answers in the OMR sheet by darkening the appropriate bubble with the help of Blue / Black Ball Point Pen only as the correct answer(s) of the question attempted. OMR 8. Use of Pencil is strictly prohibited. Your Target is to secure Good Rank in Pre-Medical 2017 Do not open this Test Booklet until you are asked to do so Important Instructions / Form Number : DISTANCE LEARNING PROGRAMME (Academic Session : 2016 - 2017) TARGET : PRE-MEDICAL 2017 LEADER TEST SERIES / JOINT PACKAGE COURSE Note : In case of any Correction in the test paper, please mail to [email protected] within 2 days along with Paper code and Your Form No. Correction Paper code Form No. [email protected] mail Test Type : MAJOR TEST # 01 Test Pattern : NEET-UG TEST DATE : 05 - 02 - 2017 Paper Code : 0999DM310316019 TEST SYLLABUS : FULL SYLLABUS
Transcript
Page 1: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

Corporate Office : CAREER INSTITUTE, “SANKALP”, CP-6, Indra Vihar, Kota (Rajasthan)-324005

+91-744-5156100, 5162200 [email protected] www.dlp.allen.ac.in, dsat.allen.ac.in

1. A seat marked with Reg. No. will be allotted to each student. The student should ensure that he/she occupies the

correct seat only. If any student is found to have occupied the seat of another student, both the students shall be

removed from the examination and shall have to accept any other penalty imposed upon them.

2. Duration of Test is 3 Hours and Questions Paper Contains 180 Questions. The Max. Marks are 720.

31807203. Student can not use log tables and calculators or any other material in the examination hall.

4. Student must abide by the instructions issued during the examination, by the invigilators or the centre incharge.

5. Before attempting the question paper ensure that it contains all the pages and that no question is missing.

6. Each correct answer carries 4 marks, while 1 mark will be deducted for every wrong answer. Guessing of answer

is harmful.

17. A candidate has to write his / her answers in the OMR sheet by darkening the appropriate bubble with the help of

Blue / Black Ball Point Pen only as the correct answer(s) of the question attempted.

OMR

8. Use of Pencil is strictly prohibited.

Your Target is to secure Good Rank in Pre-Medical 2017

Do not open this Test Booklet until you are asked to do so

Important Instructions /

Form Number :

DISTANCE LEARNING PROGRAMME(Academic Session : 2016 - 2017)

TARGET : PRE-MEDICAL 2017

LEADER TEST SERIES / JOINT PACKAGE COURSE

Note : In case of any Correction in the test paper, please mail to [email protected] within 2 days along with Paper code and YourForm No.

Correction Paper codeForm No. [email protected] mail

Test Type : MAJOR TEST # 01 Test Pattern : NEET-UG

TEST DATE : 05 - 02 - 2017

Paper Code : 0999DM310316019

TEST SYLLABUS : FULL SYLLABUS

Page 2: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

Leader Test Series/Joint Package Course/NEET-UG/05-02-2017

0999DM310316019 LTS-1/31

BEWARE OF NEGATIVE MARKING

HAVE CONTROL → HAVE PATIENCE → HAVE CONFIDENCE ⇒ 100% SUCCESS

1. Th e greatest value of th e function –5 sinθ + 12 cos θ is :-

(1) 12 (2) 13 (3) 7 (4) 17

2. Tw o point ch arge s + 9 q and + q are k ept 16 cm

apart. W h ere s h ould a th ird ch arge q be placed

be tw e en th em s o th at th e s ys tem rem ains in

eq uilibrium ?

(1) 24 cm from + 9 q (2) 12 cm from + 9 q

(3) 24 cm from + q (4) 12 cm from + q

3. Tw o sm all sph ere s each h aving a ch arge + Q are

suspended by insulating th reads of length L from

a h ook . Th is arrangem ent is tak en to a space

w h ere th e re is no gravitational effect, th en th e

angle betw een th e tw o th reads and th e tens ion in

each w ill be :-

(1) °πε

2

20

1 Q180 ,

4 (2L)(2) °

πε

2

20

1 Q90 ,

4 L

(3) °πε

2

20

1 Q180 ,

4 2L(4) °

πε

2

20

1 Q180 ,

4 L4. Th e eq uation of th e stationary w ave is :-

y=2A s in 2 ct 2 x

cosπ π

λ λ

W h ich of th e follow ing statem ents is w rong?(1) Th en unit of ct is sam e as th at of λ(2) Th e unit of x is sam e as th at of λ(3) Th e unit of 2π c/λ is sam e as th at of 2π x/λ t(4) Th e unit of c/λ is sam e as th at of x/λ

5. A particle starts from re s t. Its acceleration (a)versus tim e (t) is as s h ow n in th e figure . Th em axim um spee d of th e particle w ill be:-

a

11

10 m/s2

t(s)

(1) 110 m /s (2) 55 m /s(3) 550 m /s (4) 660 m /s

1. Q y u –5 s in θ + 12 cos θ d k v f / k d r e e k u g S % &(1) 12 (2) 13(3) 7 (4) 17

2. n k s f c U n q v k o s' k + 9 q o + q , d n w l j s l s 16 cm n w j f L F k r

g Sa A m u d s c h p , d r h l j k v k o s' k q d g k a j [ k k t k , r k f d

f u d k ; l k E ; k o L F k k e s a j g s % &

(1) + 9 q l s 24 cm (2) + 9 q l s 12 cm

(3) + q l s 24 cm (4) + q l s 12 cm

3. n k s N k sV h x sa n f t u e sa ç R ; s d i j + Q d w y k W e è k u v k o s ' k g S]

, d L V S . M d s g q d l s c j k c j y E c k b Z L e h V j d h n k s

f o | q r j k sè k h M k sf j ; k s a l s y V d k b Z x b Z g SA b l l e k ; k s t u d k s

, d m i x z g e s a j [ k d j v a r f j k e sa t g k ¡ x q : R o k d " k Z . k u g h a

g S] y s t k ; k t k r k g SA n k su k sa M k sf j ; k sa d s c h p d k s. k r F k k M k sf j ; k sa

e sa r u k o g k s x k :-

(1) °πε

2

20

1 Q180 ,

4 (2L)(2) °

πε

2

20

1 Q90 ,

4 L

(3) °πε

2

20

1 Q180 ,

4 2L (4) °πε

2

20

1 Q180 ,

4 L

4. v i z x k e h r j ax d h l e h d j . k

y = 2A s in 2 ct 2 x

cosπ π

λ λ g SA

f u E u e sa l s d k Su & l k d F k u v l R ; g S\(1) ct r F k k λ d s e k = d l e k u g Sa(2) x r F k k λ d s e k = d l e k u g Sa(3) 2 π c/λ r F k k 2 π x/λ t d s e k = d l e k u g Sa(4) c/λ r F k k x/λ d s e k = d l e k u g Sa

5. , d d . k f o j k e k o L F k k l s p y u k i z k j E H k d j r k g SA b l d k R o j . k(a)- l e ; (t) x zk Q f p = e sa n ' k k Z ; k x ; k g SA d . k d h v f è k d r ep k y g k sx h :-

10 /e h l s2a

11t( )l sd . M

(1) 110 e h /l s (2) 55 e h /l s(3) 550 e h /l s (4) 660 e h /l s

Page 3: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

0999DM310316019

Major Test For Target : Pre-Medical 2017/NEET-UG/05-02-2017

LTS-2/31

6. Th e total re s istance betw een x and y in oh m s is :-

4Ωx y

(1) 1 Ω (2) 4 Ω (3) 43

Ω (4) 23

Ω

7. A particle is projected w ith a velocity v, so th atits range on a h orizontal plane is tw ice th e greatesth e igh t attained. If g is acceleration due to gravity,th en its range is :-

(1)24v

5g (2) 2

4g

5v(3)

3

2

4v

5g (4) 2

4v

5g

8. A particle is fired w ith velocity u m ak ing an angleθ w ith th e h orizontal. W h at is th e m agnitude ofch ange in velocity w h en it is at th e h igh est point ?

(1) u cos θ (2) u

(3) u s in θ (4) (u cos θ – u)

9. Find th e potential difference acros s th e 24 Ω :-

48 Ω

4 Ω

6 Ω

24 Ω

48 Ω

2 Ω

3 Ω

2 A

5 Ω

(1)48 volts (2) 2 volts

(3) 4 volts (4) 1 volts

10. If th e net force on a body is zero, w ill it definitelybe at re st :-

(1) Ye s

(2) Not nece s sary. Th is is pos s ible th at th e bodyis m oving w ith accelerating velocity

(3) Not nece s sary. Th is is pos s ible th at th e bodyis m oving w ith decelerating velocity

(4) Not nece s sary. Th is is pos s ible th at th e bodyis m oving w ith constant velocity

6. x o y d s e / ; r q Y ; i z f r j k s/ k g S :-

4Ωx y

(1) 1 Ω (2) 4 Ω (3) 43

Ω (4) 23

Ω

7. , d d . k d k s v o sx l s b l i z d k j Q sa d k x ; k f d k Sf r t r y

e sa b l d k i j k l ] b l d s k j k i z k I r v f / k d r e Å ¡ p k b Z d k n k sx q u k

g SA ; f n g x q # R o h ; R o j . k g S] r c i j k l g S:-

(1)24v

5g (2) 2

4g

5v(3)

3

2

4v

5g (4) 2

4v

5g

8. , d d . k d k s k Sf r t l s θ d k s. k i j u o sx l s i z k sf I r f d ; kx ; k g SA o sx d s i f j e k . k e sa i f j o r Zu f d r u k g S] t c ; g m P p r ef c U n q i j g S ?(1) u cos θ (2) u(3) u s in θ (4) (u cos θ – u)

9. 24 Ω i z f r j k s/ k d s f l j k sa i j f o H k o k U r j D ; k g k sx k :-

48 Ω

4 Ω

6 Ω

24 Ω

48 Ω

2 Ω

3 Ω

2 A

5 Ω

(1)48 o k sY V (2) 2 o k sY V

(3) 4 o k sY V (4) 1 o k sY V10. ; f n f d l h f i . M + i j i f j . k k e h c y ' k w U ; g S] D ; k ; g f u f ' p r

# i l s f o j k e k o L F k k e sa g k sx k :-

(1) g k ¡

(2) f u f ' p r u g h a g S] ; g l E H k o g S f d f i . M + f d l h R o f j rg k su s o k y s o sx l s p y j g k g k s

(3) f u f ' p r u g h a g S] ; g l E H k o g S f d f i . M + f d l h e f U n ro sx l s p y j g k g k s

(4) f u f ' p r u g h a g S] ; g l E H k o g S f i . M + f d l h f u ; r o sxl s p y j g k g k s

Page 4: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

Leader Test Series/Joint Package Course/NEET-UG/05-02-2017

0999DM310316019 LTS-3/31

11. Th e effective capacitance betw een th e points P andQ of th e arrangem ent s h ow n in th e figure is

2 Fµ

2 Fµ 5 Fµ

2 Fµ

2 Fµ 1 Fµ

1 FµP Q

(1) (1/2) µ F (2)1 µ F

(3) 2 µ F (4) 1.33 µ F

12. A reference fram e attach ed to th e earth :-

(1) is an inertial fram e becaus e New ton's law s ofm otion are applicable in th is fram e

(2) is an inertial fram e by definition

(3) cannot be an inertial fram e becaus e earth isrevolving round th e sun

(4) None of th e s e13. A car starts from re st w ith a constant acceleration

of 2 m /s 2. After 5 s , a ball is dropped th rough th ew indow of th e car. Th e w indow of th e car is ata h e igh t of 1.5 m from th e ground. W h at w ill beth e speed of th e ball 0.5 s after it w as dropped?(Tak e g = 10 m /s 2):-

(1) 5 m /s (2) 5 m /s

(3) 5 5 m /s (4) 2 m /s

14. A capacitor of capacitance 5 µ F is connected as

s h ow n in th e figure . Th e internal re s istance of th e

cell is 0.5 Ω . Th e am ount of ch arge on th e

capacitor plate is :

(1) 0 1Ω 1Ω

2Ω5 Fµ

2.5V(2) 5 µ C

(3) 10 µ C

(4) 25 µ C

15. W h en a body m oves uniform ly in a circular path ,no w ork is done by th e force s ince :-(1) th ere is not net force(2) th ere is no displacem ent(3) force is alw ays aw ay from th e centre(4) force and displacem ent are perpendicular to

each oth er

11. n ' k k Z ; s x ; s f p = e sa f c U n q P v k Sj Q d s c h p i z H k k o h è k k f j r k

d k e k u g k s x k &

2 Fµ

2 Fµ 5 Fµ

2 Fµ

2 Fµ 1 Fµ

1 FµP Q

(1) (1/2) µ F (2)1 µ F

(3) 2 µ F (4) 1.33 µF

12. i ` F o h l s l E i f d Z r f u n sZ ' k r a = Ý se :-

(1) , d t M + R o h ; Ý se g Sa ] D ; k sa f d U ; w V u d s x f r d s f u ; e

b l Ý se i j y x k ; s t k l d r s g Sa

(2) i f j H k k " k k l s , d t M + R o h ; Ý se g S(3) , d t M + R o h ; Ý se u g h a g k s l d r k D ; k sa f d i ` F o h l w; Z d s

p k j k sa v k sj i f j Ø e k d j j g h g S

(4) b u e sa l s d k sb Z u g h a13. , d d k j f o j k e k o L F k k l s 2 e h /l s2 d s f u ; r R o j . k l s p y u k

i z k j E H k d j r h g SA 5 l sd . M i ' p k r ~ ] d k j d h f [ k M + d h l s , d

x sa n f x j k ; h t k r h g SA d k j d h f [ k M + d h H k w r y l s 1.5 e h V j

Å ¡ p k b Z i j g SA x sa n d k s f x j k ; s t k u s d s 0.5 l sd . M i ' p k r ~

x sa n d h p k y D ; k g k sx h ? (g = 10 e h /l s2)

(1) 5 e h /l s (2) 5 e h /l s

(3) 5 5 e h /l s (4) 2 e h /l s

14. 5 µF / k k f j r k d s , d l a / k k f j = d k s f p = k u q l k j l a ; k sf t r f d ; k

x ; k g Sa A l sy d k v k U r f j d i z f r j k s/ k 0.5 v k se g Sa a A l a / k k f j =

d h I y sV k sa i j v k o s' k g k sx k &

(1) 0 µ C 1Ω 1Ω

2Ω5 Fµ

2.5V

(2) 5 µ C

(3) 10 µ C

(4) 25 µ C

15. t c d k sb Z o L r q o ` Ù k h ; i F k i j f u ; r x f r d j r h g S] r c c y

k j k d k sb Z d k ; Z u g h a f d ; k t k r k D ; k sa f d :-

(1) d k sb Z i f j . k k e h c y u g h a g k sr k

(2) d k sb Z f o L F k k i u u g h a g k sr k

(3) c y l n So d sU æ l s i j s g k s r k g S

(4) c y r F k k f o L F k k i u i j L i j y E c o r ~ g k sr s g Sa

i z R ; s d i z ' u d k s v t q Z u c u d j d j k s A

Page 5: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

0999DM310316019

Major Test For Target : Pre-Medical 2017/NEET-UG/05-02-2017

LTS-4/31

16. f p = e sa / k k j k o k g h r k j k sa d s e / ; f L F k r e / ; f c U n q P i j p qE c d h ;

k s= g k sx k % &

5m

2.5m

2.5A5A P

(1) µ

π0

4(2)

µπ0 ⊗ (3)

µπ0

2 ⊗ (4) µπ0

217. , d d . k l e k u l e ; k U r j k y k sa e sa f d l h o ` Ù k d s i f j r % l e k u

n w j h r ; d j r k g SA d . k d h x f r l s t qM + h f u E u e sa l s d k Su & l h

j k f ' k l e ; d s l k i s k f u ; r j g r h g S ?

(1) f o L F k k i u (2) o sx

(3) p k y (4) R o j . k

18. , d d . k o ` Ù k h ; i F k e sa x f r d j j g k g SA f d l h k . k i j d . kd s d k s. k h ; o sx ] j s[ k h ; o sx ] d k s. k h ; R o j . k r F k k v f H k d sU æ

R o j . k Ø e ' k % ,v,ω αr rr o car

g Sa A f u E u e sa l s d k Su & l k l E c U è k

x y r g S ?

(1) vω ⊥r r (2) ω ⊥ αr r

(3) caω ⊥r r(4) cv a⊥ rr

19. , d / k k j k o k g h c U n y w i ( r k j Q U n ) PQRS d k s v p jp q E c d h ; k s= e sa j [ k k x ; k g SA ; f n y w i d s H k k x k sa PS, SRv k Sj RQ i j Ø e k u q l k j p q E c d h ; c y F1, F2 v k Sj F3

f Ø ; k d k j h g k sa v k Sj ; g d k x t i `" B d s r y e sa l a d sf r r f n ' k k v k sae sa g k sa ] r k s H k k x QP i j f Ø ; k d k j h c y g k sx k :-

(1) 2 23 1 2(F F ) F− −

Q

P

F1

F3

RS

F2

(2) F3 – F1 – F2

(3) F3 – F1 – F2

(4) 2 23 1 2(F F ) F− +

20. 50 x z k e H k k j d h , d x k sy h 30 e h /l s o sx l s c U n w d d k s N k sM + r hg SA ; f n c U n w d d k s i h N s d h f n ' k k e sa i z n k u d h x ; h p k y1 e h /l s g k s] r k s c U n w d d k æ O ; e k u g S:-(1) 15 f d x z k (2) 30 f d x z k(3) 1.5 f d x z k (4) 20 f d x z k

21. d . k k ssa d s f d l h f u d k ; d k æ O ; e k u d sU æ v u k / k h u g k sr k g S:-

(1) d . k k sa d s n z O ; e k u d s

(2) d . k k sa i j y x s c y k sa d s

(3) d . k k sa d h f L F k f r d s

(4) m i j k sD r l H k h

16. For th e given current distribution th e m agneticfield at point, 'P' is :-

5m

2.5m

2.5A5A P

(1) µ

π0

4(2)

µπ0 ⊗ (3)

µπ0

2 ⊗ (4) µπ0

217. A particle covers e q ual distance around a circular

path , in e q ual inte rvals of tim e . W h ich of th efollow ing q uantitie s connected w ith th e m otionof th e particle rem ains constant w ith tim e ?

(1) Dis placem ent (2) Velocity

(3) Speed (4) Acceleration

18. A particle is m oving along a circular path . Th eangular ve locity , line ar ve locity , angularacceleration and centripetal acceleration of th e

particle at any instant re spectively are ,v,ω αr rr and

car

. W h ich of th e follow ing relations is not

correct ?

(1) vω ⊥r r (2) ω ⊥ αr r

(3) caω ⊥r r(4) cv a⊥ rr

19. A closed loop PQRS carrying a current is placedin a uniform m agnetic field. If th e m agnetic force son s egm ents PS, SR and RQ are F1, F2 and F3

re spectively and are in th e plane of th e paper andalong th e directions s h ow n, th e force on th es egm ent QP is :-

(1) 2 23 1 2(F F ) F− −

Q

P

F1

F3

RS

F2

(2) F3 – F1 – F2

(3) F3 – F1 – F2

(4) 2 23 1 2(F F ) F− +

20. A bullet w e igh ing 50 gm leaves th e gun w ith avelocity of 30 m /s . If th e recoil speed im partedto th e gun is 1 m /s , th e m as s of th e gun is :-(1) 15 k g (2) 30 k g(3) 1.5 k g (4) 20 k g

21. Th e centre of m as s of a sys tem of particle doe snot depend on:-(1) m as s e s of th e particles(2) force s acting on th e particles(3) pos ition of th e particles(4) All of th e s e

Page 6: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

Leader Test Series/Joint Package Course/NEET-UG/05-02-2017

0999DM310316019 LTS-5/31

22. f p = e sa n k s l e k k h ; i f j u k f y d k , sa i z n f ' k Z r g SA ; f n i z k F k f e dd h d q a t h d k s v p k u d [ k k sy k t k o s r k s f r h ; d e sa l a ; q D ri z f r j k s/ k R e sa i z sf j r r k R k f . k d ç sf j r è k k j k d h f n ' k k g k sx h % &

(1) L l s N d h v k sj (2) N l s L d h v k sj

(3) i z R ; k o r h Z (4) ' k w U ;

23. M æ O ; e k u r F k k R f = T ; k d h , d , d l e k u f M L d d k s]

? k " k Z. k j f g r f c ; f j a x (bearing) l s t qM + s , d / k q j s (axle) i j

v k j k sf g r (m ounted) f d ; k x ; k g SA f M L d d s f j e (rim )

i j , d g Y d h M k sj h y i sV r s g Sa r F k k b l i j u h p s d h v k sj , d

f [ k a p k o (pull) T v k j k sf i r d j r s g Sa A f M L d d k s d k s. k h ; R o j . k

g S :-

(1) T/M R (2) M R/T

(3) 2T/M R (4) M R/2T

24. , d p k y d N M + f u ; r d k sf . k ; o sx ‘ω ’ l s f c U n q ‘O ’ l s x qt j u s

o k y s o y E c k b Z d s y E c o r ~ v k d s i f j r ? k w . k Z u d j j g h g SA

; f n l e : i p q E c d h ; k s= ‘B’ ? k w . k Z u v k d s l e k U r j f n " V

g k s r k s N M + d s f l j k sa d s e / ; f o H k o k U r j d k e k u g k sx k :-

(1) 6B ω l2

(2) B ω l2

(3) 10B ω l2

(4) ' k w U ;25. , d x k s y k d k j x s a n f t l d k æ O ; e k u 1 f d x z k r F k k f = T ; k

3 l s e h g S] b l d s d s U æ l s g k s d j t k u s o k y h v k d s i f j r %50 j s f M ; u @ l sd . M d s d k s. k h ; o sx l s ? k w e j g h g SA ? k w . k Z ud h x f r t Å t k Z g S :-

(1) 4500 t w y (2) 9 0 t w y

(3) 9 /20 t w y (4) 9 /10 t w y

22. Tw o co–axial solenoids s h ow n in figure . If k eyof prim ary suddenly opened th en direction ofinstantaneous induced current in re s istance ‘R’w h ich connected in s econdary:

(1) L to N (2) N to L

(3) Alternating (4) Z ero

23. A uniform dis c of m as s M and radius R is

m ounted on an axle s upported in frictionle s s

bearings . A ligh t cord is w rapped around th e rim

of th e dis c and a s teady dow nw ard pull T is

exerted on th e cord. Th e angular acceleration of

th e disc is :-

(1) T/M R (2) M R/T

(3) 2T/M R (4) M R/2T

24. A conducting rod rotates w ith a constant angular

velocity ‘ω ’ about th e axis w h ich pass es th rough

point ‘O ’ and perpendicular to its length . A uniform

m agnetic field ‘B’ exists parallel to th e axis of th e

rotation. Th en potential difference betw een th e tw o

ends of th e rod is :

(1) 6Bω l2 (2) B ω l2 (3) 10Bω l2 (4) Z ero

25. A s ph erical solid ball of 1 k g m as s and radius

3 cm is rotating about an axis pas s ing th rough its

centre w ith an angular velocity of 50 radian/s ec.

Th e k inetic energy of rotation is :-

(1) 4500 J (2) 9 0 J

(3) (9 /20) J (4) (9 /10) J

d k s b Z H k h i z ' u Key Filling l s x y r u g h a g k s u k p k f g , A

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26. M 1 r F k k M 2 æ O ; e k u k sa d s , d l e k u ? k u R o d s n k sa l ad sU æ h ;

x k sy h ; d k s' k f p = k u q l k j j [ k g Sa A r = a f L F k r i j j [ k s m

æ O ; e k u d s d . k i j c y g S– (n w j h r d k s' k k sa d s d sU æ l s e k i h

x ; h g S) :-

(1) 12

GM m

b

(2) 22

GM m

b

M1M2

c

b

a(3) 1 22

G(M M )m

a

+

(4) ' k w U ;

27. i z ' u l a [ ; k 26 e sa, m æ O ; e k u d s d . k i j c y , t c ; gr = b i j f L F k r g S:-

(1) 12

GM m

b(2) 2

2

GM m

b

(3) 1 22

G(M M )m

a

+(4) ' k w U ;

28. i z n f ' k Z r f p = e sa VR K k r d h f t , %

(1) 132V (2) 39 6V

(3) 185 V (4) 220 176V×

29. , d l j y v k o r Z x f r d k v k ; k e A , o a n k sy u d k y T g SAx = A l s x = A/2 r d p y u s e s a b l d k s f d r u k l e ;p k f g ; s ?

(1)T

12(2)

T

4

(3) T

6(4)

T

2

26. Tw o conce ntric s ph e rical s h ells of uniform

sph e rical s h ells of uniform dens ity of m as s M 1

and M 2 are s ituated as s h ow n in figure . Th e force

on a particle of m as s m located at th e pos ition

r = a (Th e distance r is m easured from th e centre

of th e s h ells) is :-

(1) 12

GM m

b

(2) 22

GM m

b

M1M2

c

b

a(3) 1 22

G(M M )m

a

+

(4) ze ro27. In Q. no. 26, th e force on th e particle of m as s m ,

w h en it is located at r = b is :-

(1) 12

GM m

b(2) 2

2

GM m

b

(3) 1 22

G(M M )m

a

+(4) ze ro

28. In s h ow ing figure find VR :

(1) 132V (2) 39 6V

(3) 185 V (4) 220 176V×

29. A s im ple h arm onic m otion h as an am plitude Aand tim e pe riod T. Th e tim e req uired by it travelfrom x = A to x = A/2 is :-

(1)T

12(2)

T

4

(3) T

6(4)

T

2

Use stop, look and go method in reading the question

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30. f p = e sa f n [ k k , v u q l k j i f j i F k e s a ] A.C. l z k s r , d o k s Y V r k

V = 20 cos (2000 t) n sr k g SA l z k sr i z f r j k sè k u x . ; g S]

o k sY V e h V j o v e h V j d s i k B ; k a d g k sa x s % &6Ω

A

V

5 mH, 4Ω 50 µF

(1) 0V, 1.4A (2) 5.6V, 1.4A(3) 0V, 0.47 A (4) 1.68 V, 0.47 A

31. EM r j a x sa f d l h e k / ; e e sa

E = E0 s in 12 × 106 [Z - 2 × 108t] NC

k j k c r k b Z t k j g h g S r k s e k / ; e d k v i o r Z u k a d g k sx k \(1) 2/3 (2) 3/2(3) 4/3 (4) 5/3

32. v i z x k e h r j a x k s d k ; g u k e b l f y , g S] D ; k sf d b u e sa:-

(1) r j a x d s d k j . k Å t k Z d k d k sb Z i z o k g u g h a g k sr k

(2) e k / ; e d s d . k l j y v k o r Z x f r u g h a d j r s

(3) e k / ; e d s d . k f o r f j r u g h a g k sr s

(4) O ; f r d j . k i z H k k o i zsf k r u g h a g k s l d r k

33. t k s l o Z l e f i ; k u k sa d s r k j k sa d h e w y v k o `f Ù k 600 l k b Z f d y

i z f r l sd . M g S t c m U g sa l e k u r u k o d s v U r x Z r j [ k k t k r k

g SA , d r k j d s r u k o e sa d h x ; h f d r u h f H k U u R e d o ` f ¼

6 f o L i U n i z f r l sd . M m R i U u d j sx h t c n k su k sa r k j , d l k F k

d E i u d j r s g Sa \(1) 0.01 (2) 0.02(3) 0.03 (4) 0.04

34. n k s l e r y n i Z . k , d n w l j s d s l e k U r j g Sa r F k k m u d s c h p

, d o L r q O f L F k r g SA n i Z . k M 2 l s i z F k e r h u i z f r f c E c d h

n w j h D ; k g k sx h :(cm e sa) -

5cm

15cm

M1 M2

O

(1) 5, 10, 15 (2) 5, 15, 30

(3) 5, 25, 35 (4) 5, 15, 25

30. In th e circuit s h ow n in th e figure, th e A.C. sourcegives a voltage V = 20 cos (2000 t) volt neglectings ource re s is tance , th e voltm eter and am m ete rreadings w ill be :

6ΩA

V

5 mH, 4Ω 50 µF

(1) 0V, 1.4A (2) 5.6V, 1.4A

(3) 0V, 0.47 A (4) 1.68 V, 0.47 A31. For an EM W ave,

E = E0 s in 12 × 106 [Z - 2 × 108t] N

Cin a m edium , th en its refractive index is

(1) 2/3 (2) 3/2

(3) 4/3 (4) 5/3

32. 'Stationary w aves' are so called becaus e in th em :-

(1) th ere occurs no flow of energy along th e w ave

(2) th e particles of th e m e dium do not execute

SH M

(3) th e particles of th e m edium are not disturbed

at all

(4) th e interference effect cannot be obs e rved

33. Tw o identical piano w ire s h ave a fundam ental

fre q uency of 600 cycle pe r s econd w h en k ept

unde r th e sam e tens ion. W h at fractional increas e

in th e te ns ion of one w ire w ill lead to th e

occurrence of 6 beats per s econd w h en both w ire s

vibrate s im ultaneously:-

(1) 0.01 (2) 0.02

(3) 0.03 (4) 0.04

34. Figure s h ow s tw o plane m irrors parallel to eachoth er and an object O placed betw een th em . Th enth e dis tance of th e first th re e im ages from th em irror M 2 w ill be :(in cm )

5cm

15cm

M1 M2

O

(1) 5, 10, 15 (2) 5, 15, 30

(3) 5, 25, 35 (4) 5, 15, 25

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35. A convex lens is m ade up of th ree

different m aterials as s h ow n in

th e figure . For a point obje ct

placed on its axis , th e num ber of

im ages form ed are

(1) 1 (2) 3 (3) 4 (4) 5

36. W h en a th in transparent plate of th ick ne s s t andrefractive index µ is placed in th e path of one ofth e tw o interfering w aves of ligh t, th en th e pathdifference ch anges by :(1) (µ + 1)t (2) (µ – 1)t

(3) ( )1

t

µ +(4)

( )1

t

µ −

37. A s em iconducting device is connected in a s e rie scircuit w ith a battery and a re s istance . A currentis found to pas s th rough th e circuit. If th e polarityof th e battery is revers ed, th e current drops toalm ost zero. Th e device m ay be :-

(1) a p-n junction(2) an intrins ic s em iconductor(3) a p-type s em iconductor

(4) an n-type s em iconductor38. In a Young's double slit experim ent, a slab of

th ick ne s s 1.2 µ m and refractive index 1.5 is placedin front of one slit and anoth er slab of th ick ne s st and refractive index 2.5 is placed in front of th es econd slit. If th e pos ition of th e central fringerem ains unaltered, th en th e th ick ne s s t is–

(1) 0.4 µ m µ1

t1

t2

µ2

S1

S2

(2) 0.8 µ m

(3) 1.2 µ m

(4) 7 µ m

39. O ut of th e com m on-bas e, com m on-em itter andcom m on-collector configurations of th e trans istoram plifier, th e voltage gain is th e h igh e st in:-

(1) com m on-bas e(2) com m on-collector

(3) com m on-em itter(4) e q ual in all th e cas e s

40. Th e m agnitude of De broglie w avelength (λ ) ofelectron (e), proton (p), neutron (n) and α - particle(α ) all h aving th e sam e k inetic energy of 1M eV,in th e increas ing order w ill follow th e s e q uence:

(1) λ e, λ p, λ n, λ α (2) λ e, λ n, λ p, λ α

(3) λ α , λ n, λ p, λ e (4) λ p, λ e, λ α , λ n

35. , d m Ù k y y sa l r h u f o f H k U u i n k F k k s± d k c u k

g SA b l d s e q [ ; v k i j j [ k h f d l h f c U n q

o L r q d s i z f r f c E c k sa d h l a [ ; k g S

(1) 1 (2) 3

(3) 4 (4)5

36. t c O ; f r d j . k d j u s o k y h i z d k ' k d h n k s r j a x k a s e sa l s , dr j a x d s i F k e sa e k sV k b Z t v k Sj v i o r Z u k a d µ d h , d i r y hi k j n ' k h Z i ê h j [ k n h t k ; s r k s i F k k U r j e sa i f j o r Z u g S %(1) (µ + 1)t (2) (µ – 1)t

(3) ( )1

t

µ +(4)

( )1

t

µ −

37. , d c SV j h v k Sj i z f r j k s/ k d s J s. k h i f j i F k e sa v ¼ Z p k y d ; q f D rd k s t k sM + k x ; k g SA i f j i F k l s , d / k k j k c g r h g SA ; f n c SV j hd h / k z q o r k m R Ø f e r d j n h t k r h g S] r c / k k j k ? k V d j y x H k x

' k w U ; g k s t k r h g SA ; q f D r g k s l d r h g S:-

(1) , d p-n l f U / k

(2) , d ' k q ¼ v ¼ Z p k y d

(3) , d p- i z d k j d k v ¼ Z p k y d(4) , d n- i z d k j d k v ¼ Zp k y d

38. ; a x d s f f L y V i z ; k sx e sa ] , d L y sc f t l d h e k sV k b Z 1.2 µ mr F k k v i o r Z u k a d 1.5 g S] , d f L y V d s l k e u s j [ k h t k r h g Sr F k k n w l j h L y sc f t l d h e k sV k b Z t r F k k v i o r Z u k a d 2.5 g S]n w l j h f L y V d s l k e u s j [ k h t k r h g SA ; f n d sU n z h ; f Ý U t d hf L F k f r i q u % v i f j o f r Z r j g r h g S]r c e k sV k b Z t d k e k u g k sx k &(1) 0.4 µ m

µ1

t1

t2

µ2

S1

S2

(2) 0.8 µ m

(3) 1.2 µ m

(4) 7 µ m39. V ªk af t L V j i zo / k Z d d s m H k ; f u " B v k / k k j ] m H k ; f u " B m R l t Zd v k Sj

m H k ; f u " B l a x z k g h l a # i . k k sa e sa l s f d l e sa o k sY V st y f C / k m P p r eg S :-(1) m H k ; f u " B v k / k k j(2) m H k ; f u " B l a x z k g h(3) m H k ; f u " B m R l t Z d(4) l H k h f L F k f r ; k sa e sa l e k u

40. 1M eV d h l e k u Å t k Z l s x f r ' k h y b y sD V ª k W u (e), i z k sV k su(p), U ; w V ª k W u (n) r F k k α - d . k (α ) d h M h c z k sX y h r j a x n S/ ; k ± sd k v k j k sg h Ø e g k s x k %

(1) λ e, λ p, λ n, λ α (2) λ e, λ n, λ p, λ α

(3) λ α , λ n, λ p, λ e (4) λ p, λ e, λ α , λ n

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41. Spe cific h e at of a gas unde rgoing adiabaticch ange is :-

(1) ze ro (2) infinite

(3) pos itive (4) negative

42. Tw o s eparate m onoch rom atic ligh t beam s A andB of th e sam e intens ity are falling norm ally on aunit area of a m etallic surface. Th e ir w avelengthare λ A and λ B re spectively. As sum ing th at all th eincid e nt ligh t is us e d in e je cting th eph otoele ctrons , th e ratio of th e num b e r ofph otoelectrons from th e beam A to th at from Bis

(1) (λ A/λ B)2 (2) λ A/λ B

(3) λ B/λ A (4) 1

43. M ean k ine tic e ne rgy pe r gram m olecule fordiatom ic gas is :-

(1)3

RT2

(2) 4

RT2

(3) 5

RT2

(4) 6

RT2

44. A body floats in a liq uid contained in a beak er.Th e w h ole system s h ow n in figure is falling undergravity. Th e upth rus t on th e body due to liq uidis :-

(1) ze ro

(2) eq ual to w e igh t of liq uid displaced

(3) eq ual to w e igh t of th e body in air

(4) eq ual to w e igh t of th e im m ers ed body

45. A certain m as s of H ydrogen is ch anged to H eliumby th e process of fus ion. Th e m ass defect in fus ionreaction is 0.02866 u. Th e energy liberated per uis : (given 1u = 9 31 M eV)

(1) 13.35 M eV (2) 2.67 M eV

(3) 26.7 M eV (4) 6.675 M eV

41. # ¼ k s" e i f j o r Z u d s v / k h u f d l h x Sl d h f o f ' k " V Å " e k g k sr hg S :-

(1) ' k w U ; (2) v u U r

(3) è k u k R e d (4) ½ . k k R e d

42. l e k u r h o z r k d h n k s i ` F k d , d o . k h Z ; i z d k ' k i a q t A o B

/ k k r q d s , d k a d k s= Q y i j y E c o r v k i f r r g k sr h g SA m u d h

r j a x y E c k b Z Ø e ' k % λ A o λ B g SA e k f u ; s f d l H k h v k i f r r

i z d k ' k d s m i ; k sx l s Q k sV k s b y sD V ª k W u d k m R l t Z u g k sr k g SA

i q a t A o B d s k j k / k k r q l r g l s m R l f t Z r Q k sV k s b y sD V ª k W u

d k v u q i k r g k sx k &

(1) (λ A/λ B)2 (2) λ A/λ B

(3) λ B/λ A (4) 1

43. f & i j e k . k q d x Sl d s f y , v k Sl r x f r t Å t k Z i z f r x z k e v . k qg k sr h g S:-

(1)3

RT2

(2) 4

RT2

(3) 5

RT2

(4) 6

RT2

44. , d c h d j e sa j [ k s , d æ o e sa , d o L r q r Sj r h g SA f p = e saf n [ k k ; k x ; k i w j k f u d k ; x q# R o d s v U r x Z r L o r U = r k i w o Z du h p s f x j j g k g SA æ o d s d k j . k o L r q i j m R I y k o d c y :-

(1) ' k w U ; g k sx k

(2) f o L F k k f i r æ o d s H k k j d s c j k c j g k sx k

(3) g o k e sa o L r q d s H k k j d s c j k c j g k sx k

(4) M w c h g q b Z o L r q d s H k k j d s c j k c j g k s x k

45. l a y ; u ç Ø e k j k g k b M ª k st u d h d q N e k = k d k g h f y ; e e sa

i f j o r Z u g k sr k g Sa A b l i z Ø e e sa n z O ; e k u k f r 0.02866 u

g Sa A r k s] i z f r u e q D r Å t k Z g k sx h % & (f n ; k g S 1u = 9 31 M ev)

(1) 13.35 M eV (2) 2.67 M eV

(3) 26.7 M eV (4) 6.675 M eV

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46. O n reacting calgon w ith M gSO 4, th e productobtained h as a ch em ical form ula :(1) Na2[Na4(PO 3)6] (2) Na2[M g2(PO 4)6](3) Na2[Na4(PO 4)6] (4) Na2[M g2(PO 3)6]

47. Correct order of th erm al stability :(1) M gCO 3 > BeCO 3 > CaCO 3 > SrCO3

(2) BeCO 3 > M gCO 3 > CaCO 3 > SrCO 3

(3) SrCO 3 > CaCO 3 > M gCO 3 > BeCO 3

(4) None of th e s e48. W h ich of th e follow ing com ple x s h ow s

geom etrical isom erism :(1) [Z n(NH 3)2Cl2] (2) [R h (PPh 3)3Cl](3) [Pd(NH 3)2Cl Br] (4) [Pt(en)Cl Br]

49. Total num be r of coordination isom ers s h ow bycom plex [Co(NH 3)6] [Cr(Cl)6] is :(1) 4 (2) 5 (3) 6 (4) 0

50. W h ich of th e follow ing com plex abs orb vis ibleligh t :(1) [Cu(NH 3)6]Cl3 (2) [Z n(NH 3)6]Cl2(3) [Ti(en)2(SO 4)2] (4) [Sc(H 2O )3(NH 3)3]Cl3

51. H ybridisation of I3– ion :

(1) sp2 (2) sp(3) sp3d2 (4) sp3d

52. W h ich of th e follow ing specie s is param agnetic:(1) O 2 (2) N2 (3) O 2

2– (4) F2

53. W h ich of th e follow ing anion h as th e s m allestradius ?(1) H – (2) F– (3) Cl– (4) Br–

54. Elem ent h aving h igh e st I.P. value is :(1) Ne (2) H e(3) Be (4) N

55. [X] + H 2SO 4 → [Y] ; a colourle s s gas w ithirritating sm ell :[Y] + K2Cr2O 7 + H 2SO 4 → Green solution[X] and [Y] are :(1) SO 3

2–, SO 2 (2) Cl–, H Cl(3) S2–, H 2S (4) CO 3

2–, CO 2

56. W ater is oxidis ed to oxygen by :(1) ClO 2 (2) KM nO 4

(3) H 2O 2 (4) Fluorine57. W h ich of th e follow ing is th e increas ing orde r of

enth alpy of vapourization ?(1) NH 3 < PH 3 < As H 3

(2) As H 3 < PH 3 < NH 3

(3) NH 3 < As H 3 < PH 3

(4) PH 3 < As H 3 < NH 3

46. d SY x u d h M gSO 4 l s v f H k f Ø ; k d j k u s i j t k s m R i k n c u sx km l d k j k l k ; f u d l w = g k sx k &(1) Na2[Na4(PO 3)6] (2) Na2[M g2(PO 4)6](3) Na2[Na4(PO 4)6] (4) Na2[M g2(PO 3)6]

47. r k i h ; L F k k f ; R o d k l g h Ø e g S &(1) M gCO 3 > BeCO 3 > CaCO 3 > SrCO3

(2) BeCO 3 > M gCO 3 > CaCO 3 > SrCO 3

(3) SrCO 3 > CaCO 3 > M gCO 3 > BeCO 3

(4) f u E u e sa l s d k sb Z u g h a48. f u E u e s a l s d k Su l k l a d q y T ; k f e r h ; l e k o ; o r k n ' k k Z r k

g S &(1) [Z n(NH 3)2Cl2] (2) [R h (PPh 3)3Cl](3) [Pd(NH 3)2Cl Br] (4) [Pt(en)Cl Br]

49. [Co(NH 3)6] [Cr(Cl)6] k j k d qy l e U o ; l e k o ; o h n ' k k Z ; st k , a x s &(1) 4 (2) 5 (3) 6 (4) 0

50. f u E u e s a l s d k Su l k l a d q y n ` ' ; i z d k ' k v o ' k k sf " k r d j r kg S &(1) [Cu(NH 3)6]Cl3 (2) [Z n(NH 3)6]Cl2(3) [Ti(en)2(SO 4)2] (4) [Sc(H 2O )3(NH 3)3]Cl3

51. I3– v k ; u d k l a d j . k g S &

(1) sp2 (2) sp(3) sp3d2 (4) sp3d

52. f u E u e sa l s d k Su l h i z t k f r v u q p q E c d h ; g S &(1) O 2 (2) N2 (3) O 2

2– (4) F2

53. f u E u e s a l s d k S u l s ½ . k k ; u d h f = T ; k f u E u r eg k sx h &(1) H – (2) F– (3) Cl– (4) Br–

54. r R o f t l d s v k ; u u f o H k o d k e k u m P p r e g S &(1) Ne (2) H e(3) Be (4) N

55. [X] + H 2SO 4 → [Y] ; , d j ax g h u , o a p qH k u x a/ k o k y h x Sl[Y] + K2Cr2O 7 + H 2SO 4 → g j k f o y ; u

[X] , o a [Y] g S &

(1) SO 32–, SO 2 (2) Cl–, H Cl

(3) S2–, H 2S (4) CO 32–, CO 2

56. f d l d s k j k ] t y v k W D l h t u e sa v k W D l h d ` r g k sr k g S &(1) ClO 2 (2) KM nO 4

(3) H 2O 2 (4) ¶ y k sj h u57. f u E u e sa l s o k " i ' k h y r k d h , U F k SY i h d k c < + r k g q v k Ø e

g S &(1) NH 3 < PH 3 < As H 3

(2) As H 3 < PH 3 < NH 3

(3) NH 3 < As H 3 < PH 3

(4) PH 3 < As H 3 < NH 3

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0999DM310316019 LTS-11/31

58. Brine solution on electrolys is w ill not give :(1) NaO H (2) O2

(3) Cl2 (4) H 2

59. W h ich m etallurgy not involve s leach ing :

(1) Au (2) Ag

(3) Al (4) Fe

60. CaC2 contain only :

(1) Coordinate bond and Ionic bond

(2) Covalent bond and coordinate bond

(3) Both of th e above

(4) None of th e above

61. Th e solubility of iodine in H 2O m ay be increas edby th e addition of :

(1) Na2S2O 3

(2) CH Cl3 and CCl4

(3) KI

(4) CS2 and inorganic benzene

62.

CH 2 CH CH 2

on oxym e rcuration-

dem ercuaration produces th e m ajor product

(1) CH 2

CHO HCH 3

(2)

CH 2 CH 2 CH 2 O H

(3)

CH 2 CO O H

(4)

CH 2 CH CH 2

O H O H

58. f o | q r v i ? k V u k j k c z k b Z u f o y ; u u g h c u k r k g S &

(1) NaO H (2) O2

(3) Cl2 (4) H 2

59. d k Su l k / k k r q d e Z e sa f u k k y u d k m i ; k sx u g h g k sr k &(1) Au (2) Ag

(3) Al (4) Fe

60. CaC2 e sa d so y m i f L F k r g S &

(1) m i l g l a ; k st d c a / k r F k k v k ; f u d c a / k

(2) l g l a ; k st d c a / k r F k k m i l g l a ; k st d c a / k

(3) m i j k sD r n k su k sa

(4) m i j k sD r e sa l s d k sb Z u g h a

61. v k ; k sM h u e sa ] H 2O e sa f o y s; r k D ; k f e y k u s i j c < + k ; h t kl d r h g S &

(1) Na2S2O 3

(2) CH Cl3 r F k k CCl4

(3) KI

(4) CS2 r F k k v d k c Z f u d c sat h u

62.

CH 2 CH CH 2

d s v k W D l h e D Z ; w j h d j . k

f o e D Z ; w j h d j . k l s e q [ ; m R i k n c u r k g S

(1) CH 2

CHO HCH 3

(2)

CH 2 CH 2 CH 2 O H

(3)

CH 2 CO O H

(4)

CH 2 CH CH 2

O H O H

Take it Easy and Make it Easy

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0999DM310316019

Major Test For Target : Pre-Medical 2017/NEET-UG/05-02-2017

LTS-12/31

63. 1.4 g of an organic com pound w as dige s te daccording to Kjeldah l's m eth od and th e am m oniaevolved w as absorbed in 60 m L of M /10 H 2SO 4

s olution. Th e exce s s s ulph uric acid re q uire s20 m L of M /10 NaO H solution for neutralisation.Th e percentage of nitrogen in th e com pound is(1) 3 (2) 5(3) 24 (4) 10

64. W h ich of th e follow ing s tructure s repre s entsNeoprene polym er

(1)

CH CH 2

C6H 5 n

(2) CH 2

C CH

Cl

CH 2

n

(3) CH 2CH

CN

n

(4) CH 2C

CH

CH 3

CH 2 n

65. W h ich one of th e follow ing is m ost stable

(1)

.

(2)

.

(3)

Ph

.

(4)

Ph

.

66. CH 3CH 2COO H 2SO Cl→A 3NH∆→B 2Br

KO H→C

Structure of com pound C is(1) CH 3CH 2CH 2NH 2 (2) CH 3CH 2NH 2

(3) CH 3CH 2NH CH 3 (4) CH 3CH 2CONH 2

67. Num ber of stereoisom ers of th e given com pound is

CH 3 CH CH CH CH 3

O H

(1) 2 (2) 3 (3) 4 (4) 6

63. 1.4 g d k c Z f u d ; k Sf x d d k s t SY M k y f o f / k v u q l k j m i p k f j rd j u s i j i z k I r v e k sf u ; k d k s M /10 H 2SO 4 d s 60 m L e sa

v o ' k k sf " k r f d ; k x ; k A v o f ' k " V v E y d s m n k l h u h d j . k d s

f y , M /10 NaO H d s 20 m L d h v k o ' ; d r k g q b Z A ; k Sf x d

e sa u k b V ª k st u i z f r ' k r r k g k sx h

(1) 3 (2) 5

(3) 24 (4) 1064. f u E u e sa l s d k Su l k f u ; k si z h u c g q y d d k s f u : f i r d j r k

g S

(1)

CH CH 2

C6H 5 n

(2) CH 2

C CH

Cl

CH 2

n

(3) CH 2CH

CN

n

(4) CH 2C

CH

CH 3

CH 2 n

65. f u E u e sa l s d k Su v f / k d r e L F k k ; h g S\

(1)

.

(2)

.

(3)

Ph

.

(4)

Ph

.

66. CH 3CH 2COO H 2SO Cl→A 3NH∆→B 2Br

KO H→C

; k Sf x d C d h l a j p u k g S(1) CH 3CH 2CH 2NH 2 (2) CH 3CH 2NH 2

(3) CH 3CH 2NH CH 3 (4) CH 3CH 2CONH 2

67. f u E u ; k Sf x d d s f = f o e l e k o ; o k sa d h l a [ ; k g k sr h g S

CH 3 CH CH CH CH 3

O H

(1) 2 (2) 3 (3) 4 (4) 6

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0999DM310316019 LTS-13/31

68. IUPAC nam e of given com pound is

O H

(1) 1,3-Dim eth yl h ex-4-enel-ol

(2) 4,6-Dim eth yl h ex-2-en-6-ol

(3) 4-M eth yl h ept-2-en-6-ol

(4) 4-m eth yl h ept-5-en-2-ol

69. W h ich of th e follow ing is correct for

(1) CH 3–CO Cl > CH 3–CO O CO –CH 3 >CH 3–CO O C2H 5 > CH 3–CO NH 2 (reactivitytow ards h ydrolysis)

(2) C6H 5–CH =O > CH 3–CH =O > CH 3–CO –CH 3

(reactivity tow ards cyanoh ydrine form ation)

(3) O Me

>O H

>Cl

>NO 2

(R eactivity tow ards electroph ilic substitutionreaction)

(4) CH 3–CH 2–CH 2–CH 2–O H >

CH 3 CH 2 CH CH 3

O H > (CH 3)3C–O H

(reactivity tow ards Lucas reagent)

70. ( ) ( ) ( )( )

( )23

2

O i Ca O HH O ii

A B∆→ →

Product B is

(1) C

H

O

(2) O

(3) O

(4)

O

68. f n ; s x ; s ; k Sf x d d k l g h IUPAC u k e g S

O H

(1) 1,3-Dim eth yl h ex-4-enel-ol

(2) 4,6-Dim eth yl h ex-2-en-6-ol

(3) 4-M eth yl h ept-2-en-6-ol

(4) 4-M eth yl h ept-5-en-2-ol

69. f u E u e sa l g h g S\

(1) CH 3–CO Cl > CH 3–CO O CO –CH 3 >

CH 3–COOC2H 5 > CH 3–CONH 2 (t y v i ? k V u

d s i z f r f Ø ; k ' k h y r k )

(2) C6H 5–CH =O > CH 3–CH =O > CH 3–CO –CH 3

(l k b u k sg k b M ª h u f u e k Z . k d s i z f r f Ø ; k ' k h y r k )

(3) OM e

> O H

> Cl

> NO 2

(b y sD V ª k W u L u sg h i z f r L F k k i u d s i z f r f Ø ; k ' k h y r k )

(4) CH 3–CH 2–CH 2–CH 2–O H >

CH 3 CH 2 CH CH 3

O H > (CH 3)3C–O H

(Y ; w d k l v f H k d e Z d d s i z f r f Ø ; k ' k h y r k )

70. ( ) ( ) ( )( )

( )23

2

O i Ca O HH O ii

A B∆→ → ,

m R i k n B g S

(1) C

H

O

(2) O

(3) O

(4)

O

f d l h i z ' u i j n s j r d : d k s u g h a A

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0999DM310316019

Major Test For Target : Pre-Medical 2017/NEET-UG/05-02-2017

LTS-14/31

71. W h ich reaction is least feas ible

(1)

Cl

NaO Hh igh tem p

O H

(2)

Cl

NO 2

NaO H→

O H

NO 2

(3)

Cl

OM e NaO H→

O H

OM e

(4)

Cl

NO 2

NO 2

NaO H→

O H

NO 2

NO 2

72. Arrange th e follow ing tow ards th e ir reactivity forE2 elim ination?

(I)

CH 3

CH 3

Br

(II) CH 3

Br

CH 3

(III) CH 3

Br

CH 3

(1) III > I > II (2) I > II > III(3) II > I > III (4) III > II > I

73.CH O

CH ONaO H→ m ajor product

(1) CH 2-O H

CH 2-O H (2) COO Na

COO Na

(3) CH 2-O H

COO Na (4) CH 2-O H

CH O

74. W h ich of th e follow ing is not a m onosacch arides?(1) Glucos e (2) Fructos e(3) Cellulose (4) D-R ibos e

71. d k Su l h v f H k f Ø ; k U ; w u r e l a H k o g S

(1)

Cl

NaO Hh igh tem p

O H

(2)

Cl

NO 2

NaO H→

O H

NO 2

(3)

Cl

OM e NaO H→

O H

OM e

(4)

Cl

NO 2

NO 2

NaO H→

O H

NO 2

NO 2

72. f u E u d k s m u d h E2 f o y k si u d s i z f r f Ø ; k ' k h y r k d s Ø e e saO ; o f L F k r d h f t ; s

(I)

CH 3

CH 3

Br

(II) CH 3

Br

CH 3

(III) CH 3

Br

CH 3

(1) III > I > II (2) I > II > III(3) II > I > III (4) III > II > I

73.CH O

CH ONaO H→ e q [ ; m R i k n

(1) CH 2-O H

CH 2-O H (2) COO Na

COO Na

(3) CH 2-O H

COO Na (4) CH 2-O H

CH O

74. f u E u e sa l s e k su k sl Sd j k b M u g h a g S\(1) Glucos e (2) Fructos e(3) Cellulose (4) D R ibos e

L o L F k j g k s ] e L r j g k s r F k k i < + k b Z e s a O ; L r j g k s A

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0999DM310316019 LTS-15/31

75. Th e m ost unlik ely repre s entation of re sonancestructure of p-nitroph enoxide is

(1)

NOO

O

(2)

NOO

O

(3)

NOO

O

(4)

NOO

O

76. If first ionisation potential of an atom is 36 V th enth e s econd excitation potential w ill be :-(1) 10.2 V (2) 12 V(3) 27 V (4) 32 V

77. W h at w ill be th e eq uivalent w e igh t of H 3PO 3 inth e follow ing reaction.

3 3 3 4 34 H PO 3H PO PH∆→ +

(1) M

6(2)

2M

3(3)

M

12(4)

M

278. Reaction N2 + 3H 2 → 2NH 3 is us ed to produce

am m onia. W h en 450 g of h ydrogen is reacted w ithnitrogen th en 1575 g am m onia is produced. W h atis th e percentage yield of th is reaction :-(1) 41.5% (2) 30.8% (3) 61.8% (4) 20.7%

79. Under s im ilar conditions w h ich of th e follow inggas e s w ill diffus e four tim e s as q uick ly asoxygen ?(1) H e (2) H 2 (3) N2 (4) D2

80. An elem ent (atom ic m as s = 250) crystallis e s ins im ple cubic lattice structure. If th e dens ity of unitcell is 7.2 gcm –3 th en th e atom ic radius of th eelem ent w ill be :-(1) 1.9 3 × 10–6 cm (2) 1.9 3 × 10–8 cm(3) 1.9 3 × 10–8 Å (4) 1.9 3 × 10–7 m

81. 20 g of naph th oic acid (C11H 8O 2) is dis solved in50g of benzene th en freezing point depre s s ion of2K is obs erved for solution. Th e vant h off factorw ill be (Kf for benzene = 1.72 Kg m ol–1 )(1) 0.75 (2) 2 (3) 0.5 (4) 3

82. Th e h igh e st pH value is of :-(1) 0.1 M NaCl (2) 0.1 M NH 4Cl(3) 0.1 M CH 3COONa (4) 0.1 M CH 3COONH 4

75. p-nitroph enoxide d h d k Su l h v u q u k n h l a j p u k v L o h d k ; Zg S\

(1)

NOO

O

(2)

NOO

O

(3)

NOO

O

(4)

NOO

O

76. ; f n , d i j e k . k q d k i z F k e v k ; u u f o H k o 36 V g S r k s f r h ;m Ù k st u f o H k o g k sx k :-(1) 10.2 V (2) 12 V(3) 27 V (4) 32 V

77. f u E u v f H k f Ø ; k e sa H 3PO 3 d k r q Y ; k a d h H k k j D ; k g k sx k

3 3 3 4 34 H PO 3H PO PH∆→ +

(1) M

6(2)

2M

3(3)

M

12(4)

M

2

78. v f H k f Ø ; k N2 + 3H 2 → 2NH 3 v e k sf u ; k m R i U u d j u s e sai z ; q D r g k sr h g SA t c 450 x z k e g k b M ª k st u d h u k b V ª k st u d sl k F k v f H k f Ø ; k d h t k r h g S r k s 1575 x z k e v e k sf u ; k i z k I rg k sr h g SA b l v f H k f Ø ; k d h i z f r ' k r y f C / k D ; k g S :-(1) 41.5% (2) 30.8% (3) 61.8% (4) 20.7%

79. l e k u i f j f L F k f r ; k sa e sa f u E u e sa l s d k Su l h x Sl ] v k W D l h t u l sp k j x q u k x f r l s f o l f j r g k sx h ?

(1) H e (2) H 2 (3) N2 (4) D2

80. , d r R o (i j e k . k q H k k j = 250) l j y ? k u h ; t k y d l a j p u ke s a f Ø L V y h d ` r g k s r k g S A ; f n b d k b Z l s y d k ? k u R o

7.2 x z k e l se h –3 g S r k s r R o d h i j e k . k q f = T ; k g k sx h :-

(1) 1.9 3 × 10–6 cm (2) 1.9 3 × 10–8 cm

(3) 1.9 3 × 10–8 Å (4) 1.9 3 × 10–7 m

81. 20 x z k e u S¶ F k k sb d v E y (C11H 8O 2) d k s 50 x z k e c sU t h u e saf o y s; d j u s i j c u s f o y ; u d k f g e k a d v o u e u 2K i z sf k rg k sr k g SA o k U V & g k W Q x q . k k a d d k e k u g k sx k (c sU t h u d s f y ,Kf = 1.72 f d x z k - e k sy –1 )(1) 0.75 (2) 2 (3) 0.5 (4) 3

82. m P p r e pH e k u g S :-(1) 0.1 M NaCl (2) 0.1 M NH 4Cl(3) 0.1 M CH 3COONa (4) 0.1 M CH 3COONH 4

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0999DM310316019

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83. For th e e q uilibrium N2O 4 (g) É 2NO 2 (g) th e ratioof th eoretical and experim ental vapour dens ity is1.5 th en percentage am ount of NO 2 by volum e ineq uilibrium m ixture is :-(1) 50% (2) 100% (3) 33% (4) 67%

84. If a gas absorbs 200 J of h eat and expands by500 cm 3 against a constant pre s sure 2 × 105 Nm –2

th en ch ange in internal energy is :-(1) – 300 J(2) – 100 J (3) + 100 J(4) + 300 J

85. Incorrect statem ent is :-(1) In certain conditions th e proces s w ith decreas e

in entropy m ay be spontaneous .(2) Th e entropy of a perfectly crystalline solid is

zero at absolute zero tem perature .(3) Enth alpy of com bustion is alw ays negative.(4) Th e proces s s h ow ing increas e in free energy

is spontaneous .86. H enderson eq uation pH -pKa = 5 w ill be applicable

to an acidic buffer w h en :-(1) [Acid] = [conjugate bas e](2) [Acid] × 105 = [conjugate bas e](3) [Acid] = [conjugate bas e] × 105

(4) [Acid] = 2 [conjugate bas e]87. Th e rate law for reaction A + B → C + D is –

rate = K [A]1/2 [B]1/2 . If th e reaction starts from1M initial concentration for both A and B th enth e tim e tak en for concentration of A to be reducedto 0.25 M w ill be – (K = 2.303 × 10–3 s ec–1)(1) 300 s ec (2) 600 s ec(3) 9 00 s ec (4) 1200 s ec

88. Fe + 3 + 3e – → Fe ; E0 = – 0.036 VFe + 2 + 2e – → Fe ; E0 = – 0.44 VTh e standard electrode potential forFe + 3 + e – → Fe + 2 w ill be :-(1) –0.476 V (2) –0.404 V(3) 0.44 V (4) 0.772 V

89. Th e m ost effective coagulating agent for antim onysulph ide (Sb2S3)sol is :-(1) Na2SO 4 (2) CaCl2(3) Al2(SO 4)3 (4) NH 4Cl

90. 3 m oles of electrons are pas s ed th rough AgNO 3 ,CuSO 4 and AuCl3 solutions connected in s erie sth en th e m olar ratio of Ag, Cu and Au depos itedon th e ir re spective cath ode s w ill be :-(1) 1 : 2 : 3 (2) 1 : 3 : 6(3) 6 : 3 : 1 (4) 6 : 3 : 2

83. N2O 4 (g) É 2NO 2 (g) l k E ; d s f y , l S¼ k f U r d r F k k i zk ; k sf x do k " i ? k u R o d k v u q i k r 1.5 g S r k s l k E ; f e J . k e sa v k ; r uv u q l k j NO 2 d h i z f r ' k r e k = k g S :-(1) 50% (2) 100%(3) 33% (4) 67%

84. ; f n , d x Sl 200 J Å " e k v o ' k k sf " k r d j d s 2 × 105 Nm –2

f L F k j n k c d s f o : ¼ 500 cm 3 i z l k f j r g k sr h g S r k s v k U r f j dÅ t k Z e sa i f j o r Z u g S :-(1) – 300 J(2) – 100 J (3) + 100 J(4) + 300 J

85. v l R ; d F k u g S :-(1) f u f ' p r i f j f L F k f r ; k sa e sa , U V ª k W i h e sa d e h n ' k k Z u s o k y k

i z Ø e L o r % i z o f r Z r g k s l d r k g SA(2) , d i w . k Z r % i f j ' k q ¼ f Ø L V y h ; B k sl d h , U V ª k W i h i j e ' k w U ;

r k i i j ' k w U ; g k sr h g SA(3) n g u d h , U F k SY i h l n So ½ . k k R e d g k sr h g SA(4) e q D r Å t k Z e sa o ` f ¼ n ' k k Z u s o k y k i z Ø e L o r % i z o f r Z r g k sr k

g SA86. , d v E y h ; c Q j d s f y , g s U M j l u l e h d j . k

pH -pKa = 5 i z ; q D r d h t k l d r h g S t c f d :-(1) [ v E y ] = [ l a ; q X e h k k j ](2) [ v E y ] × 105 = [ l a ; q X e h k k j ](3) [ v E y ] = [ l a ; q X e h k k j ] × 105

(4) [ v E y ] = 2 [ l a ; q X e h k k j ]87. v f H k f Ø ; k A + B → C + D d k o s x f u ; e g S –

o sx = K [A]1/2 [B]1/2 ; f n v f H k f Ø ; k A o B d h i z k j f E H k d

l k U n z r k 1M g k sr h g S r k s A d h l k U n z r k d k s 0.25 M g k su s e sa

f d r u k l e ; y x sx k A (K = 2.303 × 10–3 l Sd . M –1)

(1) 300 s ec (2) 600 s ec

(3) 9 00 s ec (4) 1200 s ec

88. Fe + 3 + 3e – → Fe ; E0 = – 0.036 VFe + 2 + 2e – → Fe ; E0 = – 0.44 VFe + 3 + e – → Fe + 2 d s f y , e k u d b y s D V ª k W M f o H k og k sx k :-(1) –0.476 V (2) –0.404 V(3) 0.44 V (4) 0.772 V

89. , f U V e u h l Y Q k b M (Sb2S3) l k W y d s f y , l o k Z f / k d i z H k k o hL d U n u d k j h g S :-(1) Na2SO 4 (2) CaCl2(3) Al2(SO 4)3 (4) NH 4Cl

90. J s. k h Ø e e sa l E c ¼ AgNO 3 , CuSO 4 r F k k AuCl3 d sf o y ; u k sa e sa l s 3 e k sy b y sD V ª k Wu i z o k f g r d j u s i j b u d s d SF k k sM + k sa

i j f u k sf i r Ag, Cu r F k k Au d k e k sy j v u q i k r g k sx k :-

(1) 1 : 2 : 3 (2) 1 : 3 : 6

(3) 6 : 3 : 1 (4) 6 : 3 : 2

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91. Tw o adaptive radiations are s h ow n in th e figurebelow . Anim al 'B' acq uires th e sam e adaptations asth e Anim al 'Q'. Th is type of evolution is called as :-

Ancestralstock

1

A

B

C

D

E

F

Ancestralstock

2

P

Q

R

S

T

U

(1) Convergent evolution(2) Divergent evolution(3) Both Convergent and divergent(4) Retrogre s s ive evolution

92. Read tw o s tatem ents (a) and (b) carefully ands elect th e correct option regarding th em :-(a) Firs t organis m s appe are d on e arth w e re

ch em oautotroph ic and anaerobic.(b) Cyanobacteria w ere th e first organism s w h ich

libe rated th e oxygen in atm osph ere .Options :

(1) Statem ent (a) is correct but statem ent (b) isincorrect

(2) Statem ent (a) is incorrect but statem ent (b) iscorrect

(3) Both statem ents are correct(4) Both statem ents are incorrect

93. W h ich w as th e first h um an be ing lik e creature ?(1) Ramapithecus (2) Dryopithecus

(3) Australopithecines (4) Homo habilis

94. Eleph antias is a ch ronic inflam m ation th at re sultsin gros s deform itie s is caus ed by :-(1) Trichophyton (2) E.coli(3) Wuchereria (4) Ascaris

95. Th e s econd line of defence in th e im m une systemis provided by ?(1) s k in & m ucous m em brane(2) fever & pH(3) interferons & m acroph as e(4) 2 & 3 both

96. Viral DNA after be ing converted from viral RNAby 'X' enzym e, incorporates into h ost genom e toundergo replication, w h at is 'X' ?(1) DNA polym eras e(2) Restriction endonucleas e(3) RNA polym eras e(4) Revers e transcriptas e

91. u h p s f p = e sa n k s v u q d w y h f o f d j . k sa n ' k k Z b Z x b Z g SA i z k . k h 'B'B h d o Sl s g h v u qd w y u v f t Z r d j r k g S t Sl s f d i z k . k h 'Q'.d j r k g SA b l i z d k j d s f o d k l d k s d g r s g Sa :-

i wo Z t i z k : i

1

A

B

C

D

E

F

i wo Z t i z k : i

2

P

Q

R

S

T

U

(1) v f H k l k j h f o d k l(2) v i l k j h f o d k l(3) v f H k l k j h v k Sj v i l k j h n k su k sa(4) i z f r x k e h f o d k l

92. n k s d F k u k sa (a) r F k k (b) d k s / ; k u i w o Z d i f < , r F k k m u d s l a n H k Ze sa l g h f o d Y i d k p q u k o d h f t , :-

(a) i ` F o h i j i z d V g k su s o k y s i z F k e t h o j l k ; u L o i k s" k h r F k kv o k ; o h ; F k sA

(b) l k ; u k s t h o k . k q i z F k e t h o F k s f t U g k s u s a o k ; q e . M y e s av k W D l h t u f o e q D r d h A

f o d Y i :

(1) d F k u (a) l g h i j U r q d F k u (b) x y r g S

(2) d F k u (a) x y r i j U r q d F k u (b) l g h g S

(3) n k su k sa d F k u l g h g S

(4) n k su k sa d F k u x y r g S

93. d k Su i z F k e e k u o l n ` ' ; i z k . k h F k k ?(1) j k e k f i f F k d l (2) M ª k ; k sf i f F k d l(3) v k W L V sª y k sf i f F k d l (4) g k se k s g sf c f y l

94. g k F k h i k a o j k sx t k s f d , d n h ? k Z d k y h u i z n k g c h e k j h g S f t l l sv a x f o k r g k s t k r k g S] g k sr h g SA :-(1) V ª k b d k sQ k b V k su (2) b Z. d k sy k b Z(3) o q p q j sf j ; k (4) , L d s f j l

95. i z f r j k k d h f r h ; d l q j k k i a f ä f d l d s k j k i z k I r g k sr hg S\(1) R o p k o E ; q d k sl k(2) T o j o pH(3) b . V j Q s j k W u o e sØ k sQ st(4) 2 o 3 n k su k sa

96. , d 'X' , U t k b e t k s o k ; j y RNA d k s o k ; j y DNA e sc n y r k g S t k s f d c k n e s i k s" k h d s t h u k se d s l k F k t q M + d jj sI y h d s' k u d j r k g SA ; g 'X' D ; k g S ?(1) DNA polym eras e(2) Restriction endonecleas e(3) RNA polym eras e(4) Revers e trans criptas e

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97. W h ich com pound is form ed by acetylation ofm orph ine ?(1) H eroin (2) Cocaine(3) Tobacco (4) M arijuana

98. W h ich one at th e follow ing stage is correctly

de scribed w ith its event.

(1) Anaphase I The bivalentchromosomes align onthe equatorial plate

(2) Diakinesis Beginning ofdissolution ofsynaptonemal complex

(3) Metaphase Spindle fibres attachto kinetochore ofchromosomes

(4) Zygotene Apperance ofrecombination nodule

99. Th e figure given below figure repre s ent th e stageof cell divis ion. Read th e follow ing statem ent.

(i) Nucleolus, Golgi com plex and ER reform

(ii)Ch rom osom es m oves to oppos ite pole

(iii)Activity of recom binas e enzym e

(iv)H om ologous ch rom os om e s s e parate w h iles is te r ch rom atid s as s ociate d at th e ircentrom ere

(v) Initiation of th e as s em bly of m itotic spindle.H ow m any of th e above statem ent are not true

w ith re spect to given figure .

(1) Four (2) Th ree(3) Five (4) Tw o

97. e sQ h Z u d s , l h V h y h d j . k l s d k su l k m R i k n c u r k g SA

(1) g sj k sb u (2) d k s d su

(3) r E c k d w (4) e f j t q v k u k

98. f u E u e sa l s d k Su l h , d d k sf ' k d h ; f o H k k t u d h v o L F k kd k s m l d h ? k V u k d s l k F k l g h o f . k Z r f d ; k x ; k g SA

(1) , u k Q st I ; qx y h x q. k l w = e / ; j s[ k ki V ~f V d k i j O ; o f L F k r g k sr s g SA

(2) M k ; d k b u sl h l f l u sI V k s u h e y l f E e J d kf o ? k V u i zk j E H k g k sr k g SA

(3) e sV k Q st r d q Zr U r q x q. k l w = d sd k b u sV k sd k s j l s t qM + r s g SA

(4) t k b x k sV h u i q u ; k sZ t u x za f F k d k , f n [ k k b Z n su sy x r h g SA

99. f n ; k x ; k f p = d k sf ' k d k f o H k k t u d h , d v o L F k k g SA u h p sf n , x , d F k u k sa d k s i f < + ,

(i) d sf U n z d k ] x k W Y t h d k ; o v a r n z Z O ; h t k f y d k d k i q u f u e k Z . kg k s r k g SA

(ii) Ø k se k sl k se f o i j h r / k q z o k sa d h v k Sj t k u s y x r s g SA

(iii) f j d k W E c h u st , a t k b e d h l Ø h ; r k

(iv) l e t k r x q . k l w = i ` F k d d k s t k r s g S t c f d l a r f rv / k Z & x q . k l w = ] x q . k l w = f c U n q l s t q M + s j g r s g SA

(v) l e l w = h r d q Z d s t e k o M + s d h i z f Ø ; k i z k j E H k g k s t k r hg SA

m i j k sD r e sa l s f d r u s d F k u f n , x , f p = d s l a n H k Z e sa l g hu g h a g SA

(1) p k j (2) r h u(3) i k a p (4) n k s

J g e s ' k k e q L d j k r s j g s a A

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100. Every ch rom osom e e s s entially h as th e A onth e s ide s of w h ich disc s h aped structure s called B are pre s ent.Ch oos e th e correct w ords for th e blank s A andB re spectively.(1) Centrosom e, centrioles(2) Kinetoch ore, centrosom e(3) Centrom ere, k inetoch ore s(4) DNA, RNA

101. A scie ntis t m ade an obs e rvation regarding th eprote in s ynth e s is . H e found th at ribos om eform ation tak e place in nucleolus . W h ich of th efollow ing is true for a cell th at is actively carryingout protein synth e s is . Th is cell contains :-(1) Larger and les s num erous nucleoli(2) Sm aller and m ore num erous nucleoli(3) Large and m ore num erous nucleoli(4) Sm aller and les s num erous nucleoli

102. Th e arrangem ent of axonem al m icrotubule s incilia is referred to as th e :-(1) 9 + 2 array (2) 0 + 2 array(3) 9 + 0 array (4) 4 + 4 array

103. Ch oos e th e correct option for solution :-(1) w ater ∝ osm otic Pres sure(2) OP ∝ Solute concentration

(3) OP ∝1

solute concentration

(4) OP ∝ DP104. Th e transpiration in plants w ill be th e low est :-

(1) W h en th ere is h igh h om idity in th e atm osph ere(2) h igh w ind velocity(3) th ere is exce s s of w ater in th e cell(4) envirom ental conditions are very dry

105. W h ich one elem ent is th e part of vitam ins Bioteneand th iam ine :-(1) Ca (2) S (3) M o (4) B

106. W h ere are th e protons and O 2 Releas ed duringph oto ph osph orilation :-

(1) Lum en of th ylak oid

(2) In th ylak oid m em brane

(3) In strom a

(4) Periplastodial space

107. W h ich proces s of calvin cycle req uire RuBP ?(1) Carboxylation (2) Reduction(3) Rege reration (4) Ph osph orilation

100. i z R ; sd x q . k l w = v k o ' ; d : i l s A j [ k r k g S f t l i j

f c E c v k d ` f r d h l a j p u k , a t k s B d g y k r h g S] m i f L F k r

g k sr h g SA

f j D r L F k k u k a s A r F k k B d s f y , Ø e ' k % l g h ' k C n k sa d k s p q f u , :-

(1) l sU V ª k sl k se ] l sf U V ª v k sY l

(2) d k b u sV k sd k sj ] l sU V ª k sl k se(3) l sU V ª k s e h ; j ] d k b u sV k sd k sj

(4) M h , u , ] v k j , u ,101. , d o SK k f u d u s i z k sV h u l a ' y s" k . k d s l a n H k Z e sa f u j h k . k f d ; k A

m U g k su sa i k ; k f d j k b c k sl k se d k f u e k Z . k d sf U n z d k e sa g k sr k g SA

v f / k d l f Ø ; : i l s i z k sV h u l a ' y s" k . k d j u s o k y h d k sf ' k d k

d s f y , f u E u e sa l s D ; k l R ; g k sx k A ; g d k sf ' k d k j [ k sx h :-

(1) c M + h o d e l a [ ; k e sa d sf U n z d k(2) N k sV h o v u d s d sf U n z d k

(3) c M + h o v u s d d sf U n z d k

(4) N k sV h o d e l a [ ; k e sa d sf U n z d k102. l h f y ; k d h v k l q = e sa e k b Ø k sV ~ ; w C ; w Y l d h O ; o L F k k i z . k k y h

g k sr h g S :-(1) 9 + 2 (2) 0 + 2(3) 9 + 0 (4) 4 + 4

103. f o y ; u d s f y , l g h f o d Y i d k p ; u d j s :-(1) t y ∝ i j k l j . k n k c(2) OP ∝ f o y s; d h l k a æ r k

(3) OP ∝1

f o y ;s d h l k a æ r k

(4) OP ∝ DP104. i k n i e sa o k " i k sR l t Z u l c l s d e g k sx k :-

(1) t c o k r k o j . k e sa v k æ r k v f / k d g k sx h(2) r h o z o k ; q o sx(3) d k sf ' k d k e sa t y d h v f / k d / k k j k(4) o k r k o j . k h ; i f j f L F k f r ; k v f / k d ' k q " d

105. d k Su l k r R o c k ; k sf V u o f F k ; k f e u f o V k f e U l d k H k k x g S :-

(1) Ca (2) S (3) M o (4) B

106. Q k sV k sQ k W L Q k sj h y h d j . k d s l e ; i z k sV k sU l r F k k O 2 d g k W a e q D rg k sr s g S :-(1) F k k ; y sd k W ; M d h Y ; w e su(2) F k k ; y sd k W ; M f > Y y h e sssa(3) L V ª k se k e sa(4) i f j y o d h ; v o d k ' k e sa

107. d sf Y o u p Ø e sa RuBP d h t : j r f d l i zf Ø ; k d k s g k sr h g S?(1) d k c k sZ D l h y h d j . k (2) v i p ; u(3) i q u : ¼ H k o u (4) Q k W L Q k sf j y h d j . k

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108. Am ino acid not enters in respiratory path w ay at :-(1) Krebs cycle(2) Pyruvic acid(3) Acetyle Co-A(4) Fructos e 6 Ph osph ate

109. RQ of fats substances is generally :-(1) unity (2) les s th an one(3) greater th an one (4) zero

110. W h ich effect of auxin is applied w orld w ide forplant Propagation :-(1) Apical Dom inance(2) H erbicidal action(3) Initiate rooting in stem cutting(4) Fruit ripening

111. Read th e follow ing s entence s :-

(a) In elution th e s eparated bands of DNA are cutout from agaros e gel and extracted from th egel piece .

(b) E.Coli cloning vector pBR-322 h ave s everalre s triction s ite s , ori, antibiotic re s is tancegene s and RoP.

(c) Th e dow n s tream proce s s ing and q ualitycontrol testing vary from product to product.

(d) Com petent bacterial cells tak e up th e plasm id.

(1) All are incorrect

(2) Except d, all are correct

(3) O nly d is correct

(4) All are correct

112. W h ich of th e follow ing cros s w ith re s pect toblood groups s h ow both m ultiple allelism andco-dom inance in offsprings :-

(1) B × B (2) A × A

(3) A × B (4) AB × O

113. Th e d is tillation proce s s is re q uire d in th eform ation of :-

(1) Rum (2) Brandy

(3) W h is k y (4) All of th e s e

114. A ch ild w ith blood group genotype IAIB is bothof a w om en w ith genotype IBIB. Th e fath er couldnot be a m an of genotype :-

(1) IAIA (2) IBIB

(2) IAIB (3) IAIi

108. v e h u k sa v E y ' o l u h ; i F k e sa d g k Wa i j m i ; k sx u g h a g k sr s g Sa \(1) d sC l p Ø(2) i k ; : f o d v E y(3) , f l V k b y Co-A(4) Ý D V k st 6 Q k W L Q sV

109. l k e k U ; r % o l k d k RQ g k sr k g S :-(1) , d (2) , d l s d e(3) , d l s T ; k n k (4) ' k q U ;

110. v k W D l h u d k d k Su l k i z H k k o i k n i i f j o / k Z u e sa n q f u ; k H k j e sat k u k t k r k g S :-(1) ' k h " k Z i z H k k f o r k(2) [ k j i r o k j f Ø ; k(3) r u s d h d Y e e s a t M + k sa d k i z k j a H k u(4) Q y k sa d k i f j i d o u

111. f u E u f y f [ k r d F k u k s d k s i f < + , :-

(a) b Y ; q ' k u e sa i ` F k d ` r DNA c SU M l d k s , x k j k st t sy l sd k V d j v y x d j y sr s g S r F k k DNA d k s t sy d s V q d M + sl s f u d k y y sr s g SA

(b) E.Coli d s D y k su h a x o k g d pBR -322 e sa d b Z j sL V ª h D ' k uL F k y _ O ri i z f r t Sf o d i z f r j k s/ k h t h U l o RoP g k sr s g Sa A

(c) Dow n stream proces s ing , o a x q . k o Ù k k f u ; U = . ki f j k . k v y x v y x m R i k n k s d s f y , v y x & v y x g k sr sg SA

(d) , d l k e t h o k . k q d k sf ' k d k , W a I y k f T e M d k s y s i k r h g SA(1) l H k h l g h u g h g S(2) d d s v f r f j D r l H k h l g h g S(3) d so y d l g h g SA(4) l H k h l g h g S

112. f u E u f y f [ k r e sa l s d k Su l k Ø k W l ] l a r f r ; k s e sa j D r l e w g d sl U n H k Z e s c g q ; q X e f o d Y i r k , o a l g & i z H k k f o r k i z n f ' k Z r d j r kg SA(1) B × B (2) A × A

(3) A × B (4) AB × O

113. f d l d s f u e k Z . k e sa v k l o u i z f Ø ; k d h v k o ' ; d r k g k sr h g S\

(1) j e (2) c z k U M h

(3) f O g L d h (4) m i j k sD r l H k h

114. , d c P p k (IAIB) f t l d h e k r k d k t h u i z k : i IBIB g S] r k s

b l d s f i r k d k d k Su l k t h o i z k : i l a H k o u g h a g S :-

(1) IAIA (2) IBIB

(2) IAIB (3) IAIi

v i u h k e r k d k s i w j k o l w y u s d k i z ; k l d j s a A

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115. In a vector w h ich of th e follow ing is h elpful ins election of transform ants .

(1) Restriction s ite (2) O ri s ite

(3) Selectable m ark er (4) Rop s ite

116. Tw o gene s A and B pre sent on sam e ch rom osom es h ow 30% cros s ing over, th en w h at w ill be th epercentage of gam ete (aB) for th e plant h avinggenotype Aa Bb in Cis arrangem ent :-(1) 40% (2) 70%(3) 20% (4) 15%

117. In trih ybrid, w h en all gene s h ow com plete link ageth en w h at is ratio of te st cros s :-(1) 1 : 1 : 1 : 1 : 1 : 1 : 1 : 1(2) 1 : 1(3) 1 : 1 : 1 : 1(4) 9 : 3 : 3 : 1

118. DNA finger printing profile w ill be exactly sam e of:-

(a) Sibling (b) M onozygotic tw ins

(c) O ffsprings (d) D izygotic tw ins

(1) a and b only (2) b and c only

(3) b only (4) b and d only

119. In som e virus e s flow of inform ation is in revers edirection, th at is , from RNA to DNA, th is proces sin k now n as :(1) Transcription(2) Revers e transcrition(3) Replication(4) Revers e replication

120. Th e pack aging of ch rom atin at h igh e r levelre q uire s add itional s e t of prote ins th at arecollectively are referred to as :(1) H istone protein(2) Non-h istone ch rom osom al protein(3) Pack aging protein(4) All of th e s e

121. W h ich w as th e first genetic m aterial ?(1) DNA (2) RNA(3) Protein (4) Carboh ydrate

122. Th ere is a definite region in E.Coli DNA w h ereth e replication originates . Such regions are term edas :(1) O rigin of replication(2) Replication fork(3) Replicon(4) Initiation point

115. o k g d e sa f u E u e sa l s d k Su transform ants d s p ; u e s e n nd j r k g SA

(1) Restriction s ite (2) O ri s ite

(3) Selectable m ark er (4) Rop s ite

116. n k s t h u A o B t k s f d , d g h x q . k l w = i j f L F k r g S 30%

t h u f o f u e ; i z n f ' k Z r d j r s g S r k s Cis O ; o L F k k o k y s Aa Bb

t h u k sV k b i o k y s i k S/ k s e sa (aB) ; qX e d d h i z f r ' k r r k D ; k g k sx h :-

(1) 40% (2) 70%

(3) 20% (4) 15%

117. , d f = l a d j l a d j . k e sa i j h k . k Ø k W l d k v u q i k r D ; k g k sx kt c r h u k s t h u i w . k Z l g y X u r k d k s i z n f ' k Z r d j r s g S :-(1) 1 : 1 : 1 : 1 : 1 : 1 : 1 : 1(2) 1 : 1(3) 1 : 1 : 1 : 1(4) 9 : 3 : 3 : 1

118. M h , u , v a x q y h N k i f d l d s l e k u g k sr s g SA(a) l g k sn j d s (b) , d ; q X e u t t q M + o k d s(c) l a r k u k sa d s (d) f ; q X e u t t q M + o k d s(1) d so y a v k Sj b (2) d so y b v k Sj c(3) d so y b (4) d so y b v k Sj d

119. d q N f o " k k . k q v k s a e s a l w p u k d k c g k o f o i j h r f n ' k k e s av k j , u , l s M h , u , d h r j Q g k s r k g S a ] b l i z Ø e d k sd g r s g S &(1) v u q y s[ k u(2) f o i j h r v u q y s[ k u(3) i z f r f y f i d j . k(4) f o i j h r i z f r f y i h d j . k

120. m P p L r j i j Ø k se sf V u d s i Sd sf t a x g sr q v f r f j D r i z k sV h u d hv k o ' ; d r k g k s r h g S a f t l s l k e w f g d : i l s d g r sg S &(1) f g L V k su i z k sV h u(2) x Sj & f g L V k su x q . k l w = h ; i z k sV h u(3) i Sd sf t a x i z k sV h u(4) m i j k sD r l H k h

121. i g y k v k u q o k a f ' k d i n k F k Z d k Su l k F k k \(1) DNA (2) RNA(3) i z k sV h u (4) d k c k sZ g k b M ª sV

122. b Z - d k sy k b Z d s M h , u , e sa d q N f u f ' p r L F k k u g k sr s g SA t g k ¡ l si z f r d ` f r d h ' k q : v k r g k s r h g S A b u t x g k s a d k s d g r sg S &(1) i z f r d ` f r d k L F k y(2) i z f r d ` f r f ' k k [ k(3) j si f y d k W u(4) i z k j a H k u f c U n q

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123. Below figure repre s ents :

(1) Capping(2) Polyadenylation(3) Splicing(4) h n RNA proces s ing

124. H ybrid vigour is due to :(1) Ch iasm a (2) Inbreeding(3) Reom bination (4) H eterozygos ity

125. Som aclonal variation appears in :(1) O rganis m produce d th rough s om atic

h ybridization(2) Plants grow ing in h igh ly polluted conditions(3) Apom ictic plants(4) Tis sue culture rais ed plants

126. W h ich one of th e follow ing is not a constituentof cell m em brane ?(1) Ph osph olipid (2) Ch olesterol(3) Glycolipid (4) Proline

127. W h ich of th e follow ing statem ent incorrect aboutenzym e activity ?

(1) Each enzym e s h ow s its h igh e st activity at aparticular te m pe rature and pH called th eoptim um tem perature and optim um pH

(2) Activity decline s both below and above th eoptim um value

(3) Low tem perature pre s erves th e enzym es in aparm anantly inactive stage

(4) H igh tem perature de stroys enzym atic activitybecaus e proteins are denatured by h eat

123. u h p s f n ; k x ; k v k j s[ k f u : f i r d j r k g S &

(1) v k P N k n u(2) i k W y h , M h u k b y sl u(3) l e c a / k u(4) h n-RNA l a l k / k u

124. l a d j v k St d k d k j d g S &(1) D ; k T e k (2) v a r i z t u u(3) i q u Z ; k st u (4) f o " k e ; q X e r k

125. l k se k D y k su y f o f H k U u r k f d l e sa i k ; h t k r h g S &(1) l t h o t k s d k f ; d l a d j . k k j k c u r s g SA(2) i k n i t k s v R ; f / k d i z n w f " k r k s = k s a e s a o ` f ¼ d j r s

g SA(3) , si k sf e f D V d i k n i(4) i k n i t k s Å Ù k d l a o / k Z u l s c u r s g SA

126. f u E u e s a l s d k Su l k , d d k s f ' k d k f > Y y h d k j p d u g hg S &(1) Q k W L Q k sf y f i M ~ l (2) d k sy sL V ª k sy(3) X y k b d k sf y f i M ~ l (4) i z k sy h u

127. f u E u e sa l s d k Su l k d F k u , a t k b e f Ø ; k ' k h y r k d s c k j s e sa x y rg S &(1) i z R ; sd , a t k b e d h v f / k d r e f Ø ; k ' k h y r k , d f o ' k s" k

r k i Ø e o pH i j g h g k sr h g SA f t l s Ø e ' k % b Z " V r ~ er k i e k u o pH d g r s g Sa A

(2) b l b Z " V e e k u d s Å i j ; k u h p s g k su s l s f Ø ; k ' k h y r k? k V t k r h g SA

(3) f u E u r k i Ø e , a t k b e d k s L F k k ; h : i l s f u f " Ø ; v o L F k ke sa l q j f k r j [ k r k g SA

(4) m P p r k i Ø e , a t k b e d h f Ø ; k ' k h y r k d k s l e k I r d jn sr k g Sa D ; k sa f d m P p r k i Ø e , a t k b e d s i z k sV h u d k s f o d ` rd j n sr k g SA

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0999DM310316019 LTS-23/31

128. Taenia is endoparasite by w h ich m eth od it w ill getits nutrition in vertebrates alim entary canal:-(1) Byh ook s(2) By suck ers(3) Th rough general body surface(4) Both 1 and 2

129. Alim e ntary canal is com ple te w ith a w elldeveloped M uscular ph arynx is pre s ent in :-(1) Taenia (2) Ascaris(3) Fasciola (4) Both 1 and 3

130. M e m be rs of w h ich s ub ph ylum s h ow s"Retrogre s s ive m etam orph os is" :-(1) Proto ch ordata (2) Uroch ordata(3) Ceph aloch ordata (4) Euch ordata

131. W h at type of vis ion is found in cock roach ?(1) M osaic (2) Super pos ition(3) Binocular (4) None of th em

132. Sim ple & com pound e pith e lium can b edistinguis h by ?(1) No. of cells layer(2) Type s h ape of cells(3) O rigin of cells(4) Th rough plasm a m em brane m odification

133. M ark th e odd one in th is s erie s :-Areolar tis sue, blood, Neuron, Tendon(1) Areolar tis sue (2) Blood(3) Neuron (4) Tendon

134. H ow m any statem ents are correct from follow ingstatem ents (A-D) ?(A) Cartilage and bone are both s tructural

m aterials(B) Blood is a fluid tis sue w ith transport functions(C) Areolar tis sue is a re s ervoir of stored energy(D) M uscle tis sue, w h ich can s h orten in re spons e

to s tim ulation(1) Th ree (2) Tw o (3) O ne (4) Four

135. Refer th e given figures and s elect th e correct option

(1) It is a type of parth enogene s is(2) It is a type of as exual reproduction(3) Th e offsprings can also be called as clones(4) Both (2) and (3)

128. V h f u ; k v U r i j t h o h g SA o g d ' k s: d h d h v k g k j u k y e saf d l f o f / k l s i k s" k . k i z k . k r d j r k g S :-(1) g q d k j k(2) p q " k d k a s k j k(3) l k e k U ; ' k j h j l r g(4) 1 o 2 n k su k sa

129. i w . k Z v k g k j u k y d s l k F k i s' k h ; x z l u h f u E u e sa l s f d l e sam i f L F k r g k sr h g S :-(1) f V f u ; k (2) , L d s f j l(3) Q sf l v k sy k (4) 1 o 3 n k su k s

130. f d l m i l a ? k d s l n L ; i z f r x k e h d k ; k U r j . k n ' k k Z r sg a S :-(1) i z k sV k sd k M sZ V k (2) ; w j k sd k M sZ V k(3) f l Q sy k sd k M sZ V k (4) ; q d k M sZ V k

131. d k W d j k sp e sa d Sl h n ` f " V g k s r h g S\(1) e k st sd (2) m i < k ¡ d u(3) f u s= h ; (4) b u e sa l s d k sb Z u g h a

132. l j y , o a l a ; qD r m i d y k d k s, d s k j k v y x f d ; k t k l d r kg S\(1) d k sf ' k d k i j r k sa d h l a [ ; k d s v k / k k j i j(2) d k sf ' k d k v k sa d s v k d k j d s i z d k j d s v k / k k j i j(3) d k sf ' k d k v k sa d h m R i f Ù k d s v k / k k j i j(4) d k sf ' k d k f > Y y h : i k U r j . k d s v k / k k j i j

133. f u E u J `a[ k y k d k s l qe sf y r u g k su s o k y s v a' k d k s v a f x r d h f t ; s:-v a r j k y h Å r d ] j D r ] r a f = d k ] d . M j k(1) v a r j k y h Å r d (2) j D r(3) r a f = d k (4) d . M j k

134. f u E u f y f [ k r e sa l s f d r u s d F k u l g h g S\ (A-D)(A) v f L F k , o a m i k f L F k n k su k s , d r j g d s l a j p u k R e d i n k F k Z

g k sr s g a S(B) : f / k j , d r j y Å r d g S f t l d k d k ; Z i f j o g u g S(C) v a r j k y h Å r d Å t k Z d k s l a f p r d j u s d k d k e d j r k

g S(D) i s ' k h ; Å r d t k s f d l h m n ~ n h i u i j v u q f Ø ; k d s

Q y L o : i N k sV k g k sr k g S(1) r h u (2) n k s (3) , d (4) p k j

135. f n ; s x ; s f p = k sa d k s n s[ k sa v k Sj l g h f o d Y i d k p ; u d j sa &

(1) ; g , d i z d k j d k v f u " k sd t u u g SA(2) ; g , d i z d k j d k v y Sa f x d t u u g SA(3) l a r f r d k s D y k su H k h d g l d r s g SA(4) (2) o (3) n k su k sa

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LTS-24/31

136. Triple fus ion in caps ella Bursa pastoris is fus ionof m ale gam ete w ith :(1) Antipodal (2) Synergid(3) Secondary nucleus (4) Egg

137. Coleoptile and coleorh iza are th e prote ctives h eath s covering _ _ _ _ _ _ and _ _ _ _ _ re spectively.(1) Radicle, H ypocotyl (2) Radicle, Plum ule(3) Plum ule, Epicotyl (4) Plum ule, Radicle

138. M atch th e follow ing & Ch oos e righ t option :-

Column-I Column-II

(I) Tap root (A) Banyan

(II) Stilt root (B) Rhizophora

(III) Prop root (C) Turnip

(IV) Pneumatophores (D) Sugar cane

Option :-

(1) I–C, II–A, III–D, IV–B(2) I–C, II–D, III–A, IV–B(3) I–C, II–D, III–B, IV–A(4) I–A, II–C, III–B, IV–D

139. H ow m any plants belongs to fam ily Solanaceae?As h w agandh a, Lily, Tulip, Tobacco, Belladona,Ch illi, Lupin, Tom ato, Gram(1) Seven (2) Four(3) Eigh t (4) Five

140. W h ich of th e follow ing is not produced by th eproces s of differntiation ?(1) Prim ary xylem (2) Parench ym a(3) Secondary xylem (4) Prim ary ph loem

141. Bryoph yte s are :-(1) Vascular cryptogam s(2) Non-Vascular cryptogam s(3) First succes sfull land plants(4) Vascular em bryoph yte s

142. In Pteridoph yte s reduction divis ion h appens in :-(1) Proth allus (2) Gam etangia(3) Spore m oth er cells (4) Z ygote

143. Ch oos e incorrect option :

(1) Chemical method Today

(2) Barrier method Diaphragms

(3) I.U.D. Progestasert

(4) Hormonal method CuT

136. d sI l sy k c l k Z i sL V k sf j l e sa f = l a y ; u ] u j ; q X e d d k b l d sl k F k l a y ; u g S &(1) i z f r O ; k l k a r d k sf ' k d k (2) l g k ; d d k sf ' k d k(3) f r h ; d d sU n z d (4) v . M

137. i zk ad q j p k sy v k Sj e w ay k d q j p k sy l q j k k R e d v k o j . k g Sa t k s Ø e ' k %_ _ _ _ _ _ v k Sj _ _ _ _ _ d k s v k o f j r d j r s g S &(1) e w y k a d q j ] c h t i = k / k k j (2) e w y k a d q j ] i z k a d q j(3) i z k a d q j ] c h t i = k si f j d (4) i z k a d q j ] e w y k a d q j

138. f u E u d k s l q e sf y r d j k s v k Sj l g h f o d Y i d k s p q u k s :-

d k W y e -I d k W y e -II

(I) e w l y k t M (A ) c j x n

(II) t V k e w y (B) j k b t k s Q k sj k

(III) L r E H k e w y (C) ' k y t e

(IV ) U ; q e sV k sQ k sj (D ) x U u k

f o d Y i % &(1) I–C, II–A, III–D, IV–B(2) I–C, II–D, III–A, IV–B(3) I–C, II–D, III–B, IV–A(4) I–A, II–C, III–B, IV–D

139. f d r u s i k S/ k s d q y & l k sy su sl h l s l E c f U / k r g S\v ' o x a / k k ] f y y h ] V ; w f y i ] r c k a d q ] c sy k M k su k f e p Z ] Y ; w f i u ]V e k V j ] p u k A(1) l k r (2) p k j(3) v k B (4) i k ¡ p

140. f u E u e s a l s d k Su f o H k s n u d h i z f Ø ; k k j k u g h c u r kg S ?(1) i z k F k f e d t k b y e (2) e ` n w r d(3) f r h ; d t k b y e (4) i z k F k f e d ¶ y k s, e

141. c z k ; k sQ k b V ~ l g S :-(1) l a o g u h ; f Ø I V k sx sE l(2) v l a o g u h ; f Ø I V k sx sE l(3) i z F k e l Q y L F k y h ; i k n i(4) l a o g u h ; H k w z . k / k k j h i k n i

142. V sf j M k sQ k b V ~ l e sa v ¼ Z l w = h f o H k k t u g k sr k g S :-(1) i z k sF k Sy l e sa (2) ; q X e d / k k u h e sa(3) c h t k . k q e k r ` d k sf ' k d k v k sa e sa (4) ; q X e u t e sa

143. v l R ; f o d Y i d k p ; u d h f t ; s &

(1) j k l k ; f u d f o f / k Today

(2) v o j k s/ k d M k ; k Ý k We

(3) v a r x H k k Z ' k ; ; q f D r i zk st s L V k l V Z

(4) g k e k sZ u y m i k ; CuT

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144. Th e pregnancy te st is bas ed on detection of w h ichh orm one ?(1) Progesterone (2) Inh ibin(3) H CG (4) Estrogen

145. Find out correct order of sperm atogene s is ?(1) Sperm atogonia, Sperm atid,

Prim ary sperm atocyte, Sperm(2) Sperm atogonia, Prim ary sperm atocyte,

Sperm atid, Sperm(3) Prim ary sperm atocyte, Sperm atogonia,

Sperm atid, Sperm(4) Sperm atogonia, Prim ary sperm atocyte,

Sperm , Sperm atid146. Artificial system of class ification clas sified plants

on th e bas is of :-(1) O ne or tw o m orph ological ch aracters(2) Ph ylogenetic ch aracters only(3) Gros s m orph ology(4) Ch em ical ch aracters

147. W h ich of th e follow ing contain inform ation onany one taxon :-(1) M anual (2) Flora(3) M onograph (4) Catalogue

148. Visible or w ell developed sex organ are found in :-(1) Cryptogam ae (2) Ph anerogam ae(3) Bryoph yte (4) Pteridoph yte

149. W h ich of th e follow ing is a feature of h um an only ?(1) Cons e ious ne s s (2) Reproduction(3) M etabolism (4) Self Consciousne s s

150. H ow m any specie s are pre s ent in th e follow inggroup of organism ?M angife ra ind ica, Solanum tub e ros um ,Panth era leo, Panth era pardus , solanum nigrum .(1) Four (2) Five(3) Ten (4) Th ree

151. Virion is :-(1) Nuclie acid of virus(2) Antiviral agent(3) Protein of virus(4) Com pletely as s em bled virus outs ide h ost

152. Select th e pair th at cons ists of plant or anim albacterial dis eas e s :-(1) Ch olera and typh oid(2) Citrus cank er and crow n gall(3) M alaria and dengue(4) Both (1) and (2)

144. x H k Z / k k j . k d k f u / k k Z j . k f d l g k e k sZ u d h i g p k u l s l a H k og S &(1) i z k st sL V ª k W u (2) b u f g f c u(3) , p - l h - t h - (4) , L V ª k st u

145. ' k q Ø t u u d s l g h Ø e d k p ; u d h f t ; s &(1) ' k q Ø k . k q t u ] ' k q Ø k . k q i z l q ] i z k F k f e d ' k q Ø d k sf ' k d k ; sa ]

' k q Ø k . k q(2) ' k q Ø k . k q t u ] i z k F k f e d ' k q Ø d k sf ' k d k ; sa ] ' k q Ø k . k q i z l q ]

' k q Ø k . k q(3) i z k F k f e d ' k q Ø d k sf ' k d k ; sa ] ' k q Ø k . k q t u ] ' k q Ø k . k q i z l q ]

' k q Ø k . k q(4) ' k q Ø k . k q t u ] i z k F k f e d ' k q Ø d k sf ' k d k ; sa ] ' k q Ø k . k q ]

' k q Ø k . k q i z l q146. ç k d ` f r d o x h Z d j . k e sa i k n i k sa d k s f u E u v k / k k j i j o x h Z d ` r

f d ; k :-(1) , d ; k n k s c k á v d k f j d h y k . k(2) d so y t k f r o ` Ù k h ; y k . k(3) l E i w. k Z v d k f j d h(4) j l k ; f u d y k . k

147. f u E u e sa l s d k Su , d V sD l k W u d h t k u d k j h n sr k g S :-

(1) e sU ; w o y (2) ¶ y k sj k

(3) e k su k sx z k Q (4) d sV y k W x

148. i w . k Z f o d f l r , o a L i " V y sf x d v a x i k ; s t k r s g S :-(1) f Ø I V k sx se h (2) Q su sj k sx se h(3) c z k ; k sQ k b V (4) V sf j M k sQ k b V

149. f u E u e s a l s d k Su l k y k . k d so y e u q " ; d k g S\(1) p sr u k (2) t u u(3) m i k i p i (4) L o p s r u k

150. f u E u f y f [ k r t h o k sa d s l e w g e sa f d r u h t k f r ; k g S\

e sa t h Q sj k b a f M d k ] l k sy su e V ; w c j k sl e ] i sU F k sj k f y ; k s] i sU F k sj k

i k j M l ] l k sy su e u k b x z e A

(1) p k j (2) i k ¡ p

(3) n l (4) r h u151. f o f j ; k su g S :-

(1) f o " k k . k q d k d sf U æ d v E y(2) , f U V o k b j y , t sU V(3) f o " k k . k q d h ç k sV h u(4) i k s" k d d s c k g j i w . k Z : i l s l a ; k sf t r f o " k k . k q

152. b u e sa l s m l t k sM + s d k s p qf u ; s f t l e sa i k n i ; k t a r q d s t h o k . k qj k sx f u f g r g S :-(1) d k W y sj k o V k b Q k b M(2) f l ê l d sd a j o Ø k m u x k y(3) e y sf j ; k o M sx w a(4) (1) , o a (2) n k su k sa

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153. Silice ous frus tule s of d iatom s b e ingindestructible, piled up of th e bottom of ocean andform ed a th ick bed over billion of year such a th ickbed is k now n as :-

(1) Red s ea

(2) Diatom aceous earth

(3) Pseudorock s

(4) Red tide s

154. Com plete developed pupa of s ilk w orm is called:

(1) Nym ph (2) Im ago

(3) Instar (4) Naid

155. Select th e correct statem ents .

(1) Tryps inogen Ch ym otryps in→ Tryps in

(2) Procarboxy peptidase Peps in→ carboxypeptidase

(3) Proam ylas e Ptylin→ Am ylas e

(4) Peps inogen H Cl→ Peps in

156. M atch colum n-I w ith colum n-II and ch oos e th ecorrect options :

Column-I Column-II

(A) Goblet cell (i)Antibacterialagent

(B) Lysozyme (ii) Mucus

(C) Saliva (iii) HCl

(D) Oxyntic cells (iv)Sublingualgland

Option :

(1) A-iii, B- i, C-ii, D-iv(2) A-ii, B-iii, C-iv, D-i(3) A-iii, B- i, C-iv, D-ii(4) A-ii, B-i, C-iv, D-iii

157. W h ich type of m ovem ent is com m only s h ow n by

m acroph ages and Leucocytes in blood :-

(1) Am oeboid m ovem ent

(2) Ciliary m ovem ent

(3) Undulating m ovem ent

(4) M uscular m ovem ent

153. M k ; V e d s f l y h f l ; l Ý L V ; w Y l v f o u k ' k h g k su s d s d k j . kl e q æ d h r y g V h e sa b d V ~ B s g k s t k r s g S r F k k d j k sM k s o " k k sZ d si ' p k r ~ , d e k sV h i j r c u k y sr s g SA b l ç d k j d h e k sV h i j rd g y k r h g S :-

(1) y k y l e q æ

(2) M k ; V k se sf ' k ; l v F k Z

(3) d w V p V V ~ k u

(4) j sM V k b M

154. j s' k e d h V d k i w . k Z i f j o f / k Z r I ; w i k d g y k r k g S &

(1) f u E Q (2) b e sx k s

(3) b U l V k j (4) u k ; k M +

155. l g h d F k u d k s p w u s % &

(1) Tryps inogen Ch ym otryps in→ Tryps in

(2) Procarboxy peptidase Peps in→ carboxypeptidase

(3) Proam ylas e Ptylin→ Am ylas e

(4) Peps inogen H Cl→ Peps in

156. L r E H k -I d k s L r E H k -II d s l k F k f e y k , s v k Sj l g h f o d Y i p q u s:

L r E H k -I L r E H k -II

(A) x k sC y sV d k sf ' k d k (i)i z f r t h o k f . o dd k j d

(B) y k b l k st k b e (ii) E ; w d l

(C) y k j (iii) HCl

(D)v k W D l t sf U V dd k sf ' k d k (iv) l c y h ax o y x zf U F k

f o d Y i :

(1) A-iii, B- i, C-ii, D-iv

(2) A-ii, B-iii, C-iv, D-i(3) A-iii, B- i, C-iv, D-ii(4) A-ii, B-i, C-iv, D-iii

157. j D r e s a e g k H k k d k . k q , o a ' o s r k . k q f d l i z d k j d h x f rl k e k U ; r ; k i z n f ' k Z r d j r s g S\(1) v e h c h ; x f r(2) i k e k H k h x f r(3) n k sy u x f r

(4) i s' k h ; x f r

Time Management is Life Management

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158. Cons ider th e follow ing four statem ents (A–D)and s elect th e option w h ich includes all th e correctones only?(a) Am m onia is ve ry toxic and re q uire s large

am ount of w ater for its excretion.(b) Te rre s trial anim als e xcre te le s s toxic

nitrogenous w aste products lik e urea & uricacid for w ater cons ervation.

(c) Am m onia gets excrete d as 4NH + th rough

general body surface or gill surface in fis h e sw ith th e h elp of diffus ion proces s .

(d) K idne y play an im portant role inam m onotelism .

(1) Statem ent b, c & d(2) Statem ent a and b only(3) Statem ent a, b & c(4) Statem ent a, b and d

159. Read th e follow ing statem ents :-(A) It is a ch ronic disorder

(B) M ajor caus e of it, is cigarette sm ok ing

(C) It is an Allergy

(D) Alveolar w alls are dam aged

(E) Respiratory surface is decreas ed

H ow m any of th e above statem ents are correctabout Emphysema disorder :-

(1) Tw o (2) Th ree

(3) Four (4) O ne

160. Cons ider th e follow ing four statem ents (a-d) ands elect th e option w h ich includes all th e correct :-

(a) Coronary Artery disease , (CAD) often referredto as Ath eroscleros is

(b) H eart failure m eans w h en th e h eart m uscle issuddenly dam aged by an inadeq uate blood supply

(c) H igh blood pre s sure leads to h eart diseas e s andalso affects vital organs lik e brain and k idney

(d) Angina occurs due to conditions th at affect th eblood flow

Options :

(1) Statem ents (b), (c) and (d)

(2) Statem ents (a), (b)

(3) Statem ents (b), (d)

(4) Statem ent (a), (c) and (d)

158. f u E u f y f [ k r p k j d F k u k s (A–D) i j f o p k j d h f t ; s r F k k l H k hl g h d F k u k sa o k y k d s o y , d f o d Y i p q f u , \(a) v e k s f u ; k v R ; f / k d f o " k sy h g S r F k k b l d s m R l t Z u e sa

v f è k d t y d h v k o ' ; d r k g k sr h g SA(b) L F k y h ; i zk . k h t y l aj k . k d s f y , d e f o " k sy h u k b V ª k st u h

v I k f ' k " V k sa t Sl s ; w j h ; k v k Sj ; w f j d v E y k sa d k m R l t Zu d j r sg SA

(c) v e k sf u ; k ] v e k sf u ; e v k ; u d s : i e sa ' k j h j d h l r g; k e N f y ; k sa e sa f x y l r g k j k f o l j . k f o f / k k j k m R l f t Zrg k s r k g SA

(d) v e k sf u ; k m R l x h Z d j . k e sa o ` D d d h v g e H k w f e d k g k sr hg S

(1) d F k u b, c o d

(2) d F k u a o b d so y(3) d F k u a, b o c

(4) d F k u a, b o d159. f u E u d F k u k sa d k s i f < + ; s a % &

(A) ; g , d f p j d k f y d j k s x g S(B) b l d k e q [ ; d k j . k / k w e z i k u g S(C) ; g , d , y t h Z g S(D) b l e sa d q f i d k f H k f Ù k k f r x z L r g k s t k r h g S

(E) x Sl f o f u e ; l r g ? k V t k r h g S

m i j k sD r d F k u k sa e a s l s f d r u s d F k u o k r L Q h f r ; k , E Q k b f l e k

d s c k j s e sa l g h g S% &

(1) n k s (2) r h u

(3) p k j (4) , d

160. f u E u f y f [ k r p k j d F k u k s a (a- d) i j f o p k j d h f t ; s v k S jd s o y l H k h l g h d F k u k s a o k y k s a , d f o d Y i p q f u ; s &(a) â n ; / k e u h j k sx (CAD) d k s i z k ; % , f F k j k sL d sy sj k sf l l

d s : i e sa l a n f H k Z r f d ; k t k r k g SA(b) g k V Z Q s Y ; k s j d k v F k Z g S j D r v k i w f r Z v p k u d

v i ; k Z I r g k s t k u s i j â n ; i s ' k h d k ; d k ; d k f r x z L r g k s t k u k

(c) m P p j D r n k c â n ; d h c h e k f j ; k sa d k s t U e n sr k g S r F k kv U ; e g R o i w . k Z v a x k sa t Sl s e f L r " d r F k k o ` D d t Sl s v a x k sad k s i z H k k f o r d j r k g SA

(d) , U t k b u k v o L F k k j D r c g k o d s i zH k k f o r g k su s l s g k sr h g SAf o d Y i %(1) d F k u (b), (c), (d)

(2) d F k u (a), (b)

(3) d F k u (b), (d)

(4) d F k u (a), (c), (d)

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LTS-28/31

161. f o J k e v o L F k k e sa e k sV s r U r q d k d sU æ h ; H k k x t k s i r y s r U r q

k j k v f r O ; k f i r u g h a g k sr k g S] d g y k r k g S &

(1) A-band (2) M -line

(3) H -zone (4) I-band

162. Å r d k sa l s e q ä g q b Z CO 2 d s i f j o g u d s l a n H k Z e sa d k Su l k d F k ul g h g SA(1) 70% CO 2 j ä k j k c k b Z d k c k sZ u sV d s : i e s i f j o f g r

g k sr h g SA(2) 70% CO 2 j ä k j k d k c Z , f e u k sf g e k X y k sf c u ] c k b Z d k c k sZu sV

d s : i e s i f j o f g r g k sr h g SA(3) 70% CO 2 j ä k j k d k c Z , f e u k sf g e k X y k sf c u d s : i e s

i f j o f g r g k sr h g SA(4) 20-25% CO 2 I y k T e k k j k ? k q f y r v o L F k k e sa i f j o f g r

g k sr h g SA163. i z d k ' k l a ' y s" k . k d s n k Sj k u d k c Z f u d r R o d h m R i k n u n j

g k sr h g S :-(1) GPP(2) u sV i z k F k f e d m R i k n d r k(3) f r h ; d m R i k n d r k(4) m i j k sD r l H k h

164. d k S u l k c k ; k s e o ` k k s a d h v u q i f L F k f r k j k f p f = r g k s r kg S :-(1) V Sa x k c k ; k se (2) ' k h r k s" . k ' k a d q / k k j h(3) l o k u k c k ; k se (4) V q ¡ M ª k c k ; k se

165. , d f o f ' k " V l e ; i j i z R ; sd i k s" k . k L r j i j t h f o r i n k F k Zd h d q N [ k k l e k = k g k sr h g S f t l s d g k _ _ _ _ _ _ t k r k g S :-(1) o k L r f o d H k k j (2) ' k q " d H k k j(3) [ k M + h Q l y (4) L V Sa f M a x L V sV

166. i k f j f L F k f r d h f i j k f e M f d l d s f y , c u k , t k r s g S :-

(1) [ k k n ~ ; J a ` [ k y k

(2) [ k k n ~ ; t k y

(3) , d y t h o(4) m i j k sD r l H k h

167. v k i f r r l k Sj f o f d j . k d k f d r u k H k k x i z d k ' k l a ' y s" k . k k R e dl f Ø ; f o f d j . k e sa i z ; q D r g k sr k g S :-

(1) 1% - 5% (2) 50% l s d e(3) 2% - 10% (4) 50% l s T ; k n k

168. d k Su v i ? k V u d k H k k x u g h a g S :-(1) [ k a M u (2) v i p ; u

(3) á w e l H k o u (4) L r j h d j . k

169. i f Ù k ; k s a d k ' k j n j a t u f d l k s = d s o u e s a i z d V g k s r kg S :-(1) 40° – 60° v k k a ' k (2) 20° – 40° v k k a ' k(3) 20°N – 20°S v k k a ' k (4) 60° l s v f / k d v k k a ' k

161. In a re sting state, th e central part of th ick filam entw h ich is not overlappled by th in filam ent iscalled :-(1) A-band (2) M -line

(3) H -zone (4) I-band

162. CO 2 w h ich is releas e d out of tis s ue s , w h at iscorrect for its transportation ?(1) 70% of CO 2 is transported by blood in th e form

of bicarbonate(2) 70% of CO 2 is transported by blood in form

of Carbam inoh aem oglobin, bicarbonate(3) 7% of CO 2 is transported by blood in form of

Carbam inoh aem oglobin(4) 20–25% of CO 2 is transported by plasm a in

dis solved state163. Th e rate of production of organic m atter during

ph otosynth e s is is k now n as :-(1) GPP(2) Net prim ary productivity(3) Secondary productivity(4) All of th e above

164. W h ich biom e is ch aracteris ed by th e abs ence oftree s :-(1) Taiga biom e (2) Tem perate conifer(3) Savana biom e (4) Tundra biom e

165. Each troph ic level h as a certain m as s of livingm aterial at particular tim e called as th e :-(1) Fres h w e igh t (2) Dry w e igh t(3) Standing crop (4) Standing state

166. Ecological pyram ide are m ade for :-(1) Food ch ain(2) Food w eb(3) Individual organism

(4) All of th e above

167. H ow m uch of th e incident solar radiation (ISR)is a ph otosynth etically active radiation (PAR) :-(1) 1% - 5% (2) Les s th an 50%(3) 2% - 10% (4) M ore th an 50%

168. W h ich is not th e part of Decom pos ition :-

(1) Fragm entation (2) Catabolism

(3) H um ification (4) Stratification

169. Autum n colouration of leaves appear in th e fore stof region :-

(1) 40° – 60° latitude (2) 20° – 40° latitude

(3) 20°N – 20°S latitude (4) 60° above latitude

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0999DM310316019 LTS-29/31

170. W h at w ill be h appen if th e num ber of organismincreas ed at a place :-(1) Predation on one anoth er(2) M utualism(3) Intra specific com petition(4) Inter specific com petition

171. Productivity is th e rate of production of biom as sexpre s s ed in term s of :-(a) Kcal/m 2/yr (b) Kcal/m 3/yr(c) gm –2yr–1 (d) gm –1yr–1

(1) O nly a (2) c & b (3) a & c (4) a, c & d172. W h ich one repre s ents th e range of condition of

organism , th e re source it utilis e s and its functionalrole in ecosystem .(1) Nich e (2) M icroclim ate(3) H om e range (4) H abitate

173. H ow m any of th e follow ing statem ents are true :-(a) Nois e caus es psych ological and ph ys iological

disorders in h um ans(b) Carbon dioxide and m eth ane are com m only

k now n as ozone depleting substance(c) UV-B caus e s snow blindnes s(d) W ater prevention and control of pollution act

h as pas s ed in 19 74(1) a, b & c (2) a, c & d(3) b, c & d (4) c & d

174. Th e k ind of epith elium w h ich found in Bow m an'scapsule also found in :-(1) PCT (2) Blood ves s el(3) H enle loop (4) Fallopian tube

175. Read th e follow ing statem ent carefully :-(A)Tendon is exam ple of Dens e regular w h ite

fibrous connective tis sue(B)Ligam ent is a exam ple of D e ns e re gular

yellow fibrous connective tis sue(C)Tendon is a exam ple of Dens e regular yellow

fibrous connective tis sue(D)Ligam ent is a exam ple of Dens e irregular

w h ite fibrous connective tis sueW h ich option is correct ?(1) A & B are correct (2) C & D are correct(3) A & D are correct (4) B & C are correct

176. Nasal s eptum , tip of nos e , coas tal cartilage ,intervertebral disc, Epiglottis , ear pinna, ring oftrach eaH ow m any s tructure s m ad e up of h yalinecartilage?(1) Tw o (2) Th ree (3) Four (4) Five

170. ; f n f d l h L F k k u i j l a j f k r t h o d h l a [ ; k v f / k d g k s t k r hg S r k s m u e s a l a H k o r ; k g k s x k :-(1) , d n w l j s d k i j H k k . k(2) l g k si d k f j r k(3) v k U r j t k r h ; i z f r L i / k k Z(4) v U r % t k r h ; i z f r L i / k k Z

171. t So H k k j d s m R i k n u d h n j m R i k n d r k g k sr h g S f t l s n ' k k Z ; kt k r k g S&(a) Kcal/m 2/yr (b) Kcal/m 3/yr(c) gm –2yr–1 (d) gm –1yr–1

(1) O nly a (2) c & b (3) a & c (4) a, c & d172. f u E u e sa l s d k Su , d t h o d h f L F k f r ; k sa ] m l d s k j k m i ; k sx

f d , x , l a l k / k u k sa r F k k t h o d h i f j r a = e sa d k ; k Z R e d H k w f e d kd k s n ' k k Z r k g SA(1) f u d sr (2) l w e t y o k ; q(3) g k s e j s U t (4) v k o k l

173. f u E u e s a l s f d r u s d F k u l R ; g S\(a) ' k k s j d s d k j . k e k u o e sa e u k s o SK k f u d v k Sj d k ; Z d h ;

f o d k j i Sn k g k sr k g SA(b) d k c Z u M k b Z v k W D l k b M v k Sj e sF k su d k s l k e k U ; r % v k st k su

v o k ; d k j h i n k F k Z d s : i e sa t k u k t k r k g SA(c) UV-B l s f g e v a / k r k g k sr h g SA(d) 19 74 e sa t y i z n w " k . k f u j k s/ k , o a f u ; a = . k v f / k f u ; e i k f j r

g q v k A(1) a, b & c (2) a, c & d(3) b, c & d (4) c & d

174. m i d y k Å r d d k i z d k j t k s c k se su d sI l q y e sa i k ; k t k r kg S o g f u E u e sa l s f d l e sa v k Sj H k h i k ; k t k r k g S :-(1) PCT (2) j D r o k f g u h(3) g su y s d k y w i (4) v . M o k f g u h

175. f u E u f y f [ k r i z ' u k s d k s l k o / k k u h i w o Z d i f < + ; sA(A)d a M j k @ V sU M u l ? k u f u ; f e r l Q sn r a r q e ; l a ; k st h Å r d

d k m n k g j . k g SA(B) L u k ; q l ? k u f u ; f e r i h r r a r q e ; l a ; k st h Å r d d k

m n k g j . k g SA(C) d a M j k l ? k u f u ; f e r i h r r a r q e ; l a ; k st h Å r d d k

m n k g j . k g SA(D)L u k ; q l ? k u v f u ; f e r l Q sn r a r q e ; l a ; k st h Å r d d k

m n k g j . k g SAd k Su l k f o d Y i l g h g SA(1) A , o a B l g h g S (2) C , o a D l g h g S(3) A , o a D l g h g S (4) B , o a C l g h g S

176. u k l k i V ~ V ] tip of nos e, coastal cartilage, v a r j k d ' k s: df c E c , Epiglattis , ear pinna, ring of trach ea

f u E u e sa l s f d r u h l a j p u k , d k d k p k H k m i k f L F k l s c u h g k sr h

g SA(1) n k s (2) r h u (3) p k j (4) i k a ¡ p

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177. W h ich of th e follow ing m atch ing is incorrect ?

(1) Hyaline cartilage Most commoncartilage

(2) Elastic cartilage Yellow fibrouscartilage

(3) White fibrouscartilage

Hardestcartilage

(4) Calcified cartilage Head of temur& humerus

178. Which of the following is correct ?

(A) Pars distalis produces GH,PRL, TSH. ACTH,

LH, FSH

(B) Pars intermedia secretes only one hormone

called melatonin

(C) Posterior lobe of pituitary is also called as

neurohypophysis or pars nervosa

(D) Posterior pituitary, stores and releases two

hormones called oxytocin and vasopressin

(1) A,B,C (2) B,C,D

(3) A,C,D (4) B and C

179.A Bone producing cell (i) Osteocyte

B Mature cell of bone (ii) Osteoclast

C Bone destroying cell (iii) Osteoblast

M atch th e correct & give answ er ?(1) A–i, B–ii, C–iii (2) A–iii, B–ii, C–i(3) A–iii, B–i, C–ii (4) A–ii, B–i, C–iii

180. If a person is suffering from depression. In suchsituation antidepressant drugs are required. These drugs(1) Stimulate Na+ influx at post synaptic membrane.

(2) Stimulate hyper polarisation of post synaptic

membrane.

(3) Stimulate more bursting of synaptic vesicles in

pre-synaptic membrane.

(4) Inhibit the enzyme which catalyse degradation

of nor-adranalin

177. f u E u e sa l s d k Su l k f e y k u l q e sf y r u g h a g S ?

(1) d k p k H k m i k f L F k l c l s l k e k U ;m i k f L F k

(2) i zR ; k L F k m i k f L F k i h r r a r q e ; m i k f L F k

(3) ' o s r r a r q e ; m i k f L F k l c l s d B k sj m i k f L F k

(4) d s Y l h H k wr m i k f L F k Q h e j , o a á w e j ld k f l j

68. f u E u e s l s d k Su l g h g S ?(A) i k l Z f M L V sf y l GH,PRL, TSH. ACTH, LH, FSH

d k f u e k Z . k d j r k g SA(B) i k l Z b U V j e h f M ; k , d e k = g k e k Z su f e y sV k sf u u d k l z k o

d j r k g SA(C) i h ; w " k d h i ' p i k y h U ; w j k sg k b i k sQ k b f l l v F k o k i k l Z

u o k Z sl k H k h d g y k r h g SA(D) i ' p i h ; w " k n k s g k e k Z su v k W D l h V k W f l u v k Sj o sl k si z sf l u d k

l a x z g v k Sj l z k o d j r h g SA(1) A,B,C (2) B,C,D

(3) A,C,D (4) B r F k k D179.

A v f L F k c u k u s o k y h d k sf ' k d k (i) v k f L V ; k sl k b V

B v f L F k d h i f j i D o d k sf ' k d k (ii) v k f L V ; k sD y k L V

C v f L F k u " V d j u s o k y h d k sf ' k d k (iii) v k f L V ; k sD y k L V

f e y k u d j r s g q ; s m Ù k j n sA(1) A–i, B–ii, C–iii (2) A–iii, B–ii, C–i(3) A–iii, B–i, C–ii (4) A–ii, B–i, C–iii

180. ; f n , d O ; f D r v o l k n l s x z f l r g S b l f L F k f r e sa i z f r v o l k nv k S" k f / k ; k a ( , U V h f M i sz l sU V M ª x ) d h t : j r g k s r h g SA ; sv k W " k f è k ; k a d j r h g Sa %(1) i k sL V f l u sf I V d f > Y y h o s Na+ v U r x Ze u d k s i zsf j r d j r k g SA(2) i z k sL V f l u sf I V d f > Y y h i j v f r / k q z o . k d j r k g SA(3) i z h & f l u sf I V d f > Y y h e sa f l u sf I V d i q f V d k , a d s Q V u s d k s

i z sf j r d j r s g Sa A(4) m l , U t k b e d k s l a n f e r d j r k g S t k s u k W j & , M ª h u y h u d s

v i ? k V u d k s m R i sz f j r d j r k g SA

Your moral duty

is to prove that ALLEN is ALLEN

Page 32: LEADER TEST SERIES / JOINT PACKAGE COURSE · Duration of Test is 3 Hours and Questions Paper Contains 180 ... A candidate has to write his / her answers in the OMR sheet by darkening

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0999DM310316019 LTS-31/31

SPACE FOR ROUGH WORK / j Q d k ; Z d s f y ; s t x g


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