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.Vj=a* ;m¥

Date post: 09-Jan-2022
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Pg #$% At a) Eg Ek , Eg Eu #$ Fn=ma via = ? Vf = Vita At k¥9:# aid a) : .Vj=#a* b) Ee ;m¥ EK = m } add Qian Ek=m€_=$#J
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Page 1: .Vj=a* ;m¥

Pg,

#$%

At a) Eg → Ek, Eg → Eu

#$.

Fn⇒=ma

via= ?Vf = Vita At

k¥9:#aida) :

.Vj=#a*b) Ee;m¥EK = m } addQianEk=m€_=$#J

Page 2: .Vj=a* ;m¥

)

g±9Jrg g=9.JMt=9%ksn÷

Page 3: .Vj=a* ;m¥

SPH3U – Unit 3

.

Page 4: .Vj=a* ;m¥

� Efficiency:� the amount of useful energy produced in an energy transformation

expressed as a percentage of the total amount of energy used

100%out

in

EefficiencyE

u:efficiency =Wwo±÷× %::%

OR efficiency =Pg¥x %::%

Page 5: .Vj=a* ;m¥

� Energy Resource� energy rich substance

� Non-Renewable Energy Resource� a substance that cannot be replenished as it is used in energy-

transforming processes

� Renewable Energy Resource� a substance with an unlimited supply or a supply that can be

replenished as the substance is used in energy transforming processes

Page 6: .Vj=a* ;m¥

� Fossil Fuels� fuel produced by the decayed and compressed remains of plants

that lived hundreds of millions of years ago eg. coal, oil

� Nuclear Energy� form of potential energy produced by interactions in the nucleus of

atoms� Nuclear fission – the decomposition of large, unstable nuclei into smaller,

more stable nuclei� Nuclear fusion – a nuclear reaction in which two atoms fuse together to

form a larger nucleus

Page 7: .Vj=a* ;m¥

� Solar Energy� Energy from the sun

� Passive solar design – building design that uses the sun’s radiant energy directly for heating

� Photovoltaic cell – a device that transforms radiant energy into electrical energy

� Hydroelectricity� electricity produced by transforming the kinetic energy of rushing

water into electrical energy

Page 8: .Vj=a* ;m¥

� Power (P)� the rate of transforming energy or doing work

Page 9: .Vj=a* ;m¥

� Power is measured in watts (James Watt)

� 1 watt (W) = 1 Joule / second

� scalar quantity

Page 10: .Vj=a* ;m¥

Pg .

#$Z Practice *l.

Given E±n . ]#::J

m = ]:.:kgbd = $ .

On

Required Efficiency

Analysis : Eff=±u+×bo%EwEat =Eg=

mgh

Steps Eat

=(]aokD(9Jsn⇒( $.:$

Eout = %9e:J

Eff = %9e¥atx%oo%Eff = ZJ%

Page 11: .Vj=a* ;m¥

PGB '

P ,Wn¥##

.*

Givesm=]]kge]J#Johm

tt¥tYnoDZh

's

*⇐

.fi#nMnwwYktY.nw..KkNensffssofW=;<=>S@JP=hh+<hxFgEn.xFyjeAt=L@;@@sP=;<=>sOJ_p=OOW

%:J:: s

Page 12: .Vj=a* ;m¥

Pg .

#]% #Z

Given : m=eo -:kg AnalysisV ,=:m%s P=WVz=%# mls At

gt=e .:s W=DEk

Required Power =P =zdsteps

w=rz÷e:k$#m%s)÷

- $Z#:J

p= $Z#%=- k#:W

Page 13: .Vj=a* ;m¥

� Pg. 249 # 1-3

� Pg. 254 #1-5


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