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Across advanced applied adjustment of {(clear, not), (amount, event), (process, invest), (strip, transaction)} function form of thought to assign something clear exactly
true inside system economy and financial effects = {{SA = signal adjustment and system
architecture} {!" = mode insight and modeling intelligence}}
Said Mchaalia
(draft copy, November 21
st
2013)
Figure 1 mai! real operati!g dy!amics across the mappi!g pairi!g effects, "hereby the re#uired mathematical i!te!tio!alsecrets are searchi!g measurable core$s processi!g "ithi! mode i!sight a!d modeli!g i!tellige!ce%
In fact,figure 1is showing the main real operating dynamics across the mapping pairing effects, whereby the
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required mathematical intentional secrets are searching measurable core's processing within mode insight and
modeling intelligence. Thus, the main real operating thread task of actual symbolic synchronized society to
search a suitable symbolic solution to rotation effect to allow a sufficient signed dynamics across electrical
motor and to implement a robust controling mechanism across magnetic electronics, whose major intentional
effect is the measurable core's processing across the mapping pairs. What is a pair This is the surrounding
subject of any philosophy processing inside system economy, financial effect, robust control! transmission's
transportation, logics language, and searching liable laws "yes search surrounding liable laws such as laws of
#irchoff, laws of $ewton, natural laws, %odhood's laws, etc &, comply with yeah liable law's logics language,wherby the major main real operating thread tasks are surrounding architectural mathematical intentional
symbolic synchronizations inside any mode insight and modeling intelligence of signal adjustment across system
architectures.
(ence, the mode insight and modeling intelligence of signal adjustment across system architecture is asurrounding symbolic huge hard hierarchy homes of research and safe scientific procedures, the major most
maintaining effect inside the mathematical intentional surrounding symbolic signed system ad)ances is to
comply within a safe stronger securing signed liable laws such that those of %odhood's dynamics and
mehanisms.
Figure 2 mai! real measurable compo!e!ts to allo" a fatal focus o! of mathematical i!te!tio!al surrou!di!g sig!al
ad&ustme!t across a!y system architecture
Thus,figure 2is showing main real measurable components to allow a fatal focus on of mathematical intentional
surrounding signal adjustment across any system architecture. Therefore, the major main real operating
component inside the symbolic synchronized society is the current edge flow, which could be inside any deep
in)estigation implement of )irstualism as *custom+adjust, consumer- dynamics's effect, whereby *custom
adjust any probable possible consumer is the dynamic effect of optimization of any measurable amount quantity
to allow fatal focus on processing inside the e)o)ling en)ironment reality flow. (ence, the current edge flow is a
custom of flow of any posisble probable measurable amount quantity from a defined corresponding source,
which could be easy simple called consumer of node to any another node or consumer, where this custom should
be an incoming )aluable )ariable )alue, which has to be e)aluated and then returned to flow agin inside the
defined networking processing or *%rid, which is equal to scheduling en)isage corresponding timing simulation
thread, task or job-.
In fact, the mathematical intentional surrounding dynamics has to assign any modeling intelligence and mode
insight for any possible probable corresponding dynamics and mechanism. Thus, since the major real operatingthread task across symbolic synchronized society, the major most mounting maintaining the dynamic primordial
principles across the smart smooth safe scientific society is the mathematical implementation of any possible
probable mathematical insight and mode inspiration.
(ence, any possible probable number, which has been defined within the high holy ook, has to process within a
philosophy processing belong to corresponding symbolic synchronized society. /urthermore, the main real
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operating integer number, which has been inside the huge hard high holy ook is the number fi)e *0- or the
number four *1- or the number ten *23-, or the number nine *4- or the number se)en *5- or the number three
*6- or any other number. Thus, the symbolic synchronized society is belong to the major main real operating
number four *1- due to the possible probable change of dynamics across any symbolic synchronized scientific
themes based on the binary basic built in, whereby 1=77=[(3,2)(2,3)]7 is a major real operating threadsand main returning organized tasks to handle any sequential digital processing across the symbolic synchronized
society during any possible probable timing simulaiton.
Figure 3 mai! real measurable compo!e!t i!isde the evolvi!g of a!y motor 'er!el flo" "ithi! rotatio! motio! dy!amics
In fact,figure 3 is showing the main real measurable component inisde the e)ol)ing of any motor kernel flow
within rotation motion dynamics, whereby the major primordial processing across this motor kernel dynamics
inside the defined aim object within the processing at any possible probable timing simulation within theen)isage corresponding effects and aspects of rotation motion, which has been in)estigated to implement any
manufacturing industry of electrical energy fashion flows of any energy fashion function form.
/urthermore, the associate numbesr 1=77=[(3,2)(2,3)]7 , which has to in)ol)e a logics language of*89- to handle the possible probable processsing of stochastic, statistical, probabilistic, choatic inside the fatal
focus on segment of 0, 1based on assigned function form, which has to be defined within the famous
mathematical insight and mode's implementation such as sin7() or cos7() or f(sin7(),cos7()) or
f( 2sin
7(), 2
cos7())
or any other similar function form has to e)ol)e mathematical intentional surrounding
amount quantity inside the fatal focus on segment 0, 1.
:)en though, some searcher such as ;laude
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is the major huge hard hierarchy home to tell any
inability ?no?, the principle thread is to search surround signs, what is "@this A
processing of search surround signs, neBt what is "@this again This is a
structure of defined elements " component, entity or nucleus or something
clear is something nuclear, which should be equal to elementary measurable
amount quantity inside any symbolic shining synchronized signed dynamics,
what is a dynamics then 8ops, this the huge hard hierarchy home of any
philosophy processing, justification looking for any leaf like liable laws.
transmission's transportation0=333232bi!ary={3.amount }{2.amount }{3=false}{2=true }
(ence, the amount quantity is measurable for any symbolic synchronized
signed processing. What is transmission's transportation
Thus, any transmission's transportation is measurable, how then
safe soul science's satisfaction0=333232bi!ary={3.amount }{2.amount }{3=false}{2=true }
e there where anyone could ne)er reach it.
robust control processing 0=333232bi!ary={3=!o }{2=eista!ce }{3=false }{2=true }
robust control processing A choose to suitable flow fleBible within things
which ha)e damages, dangers, disasters, destructi)e effects, &
logics language0=333232bi!ary={3.amount }{2.amount }{3=false}{2=true }
logics language A symbolic synchronized signed safe surround signal
adjustment and system architecture to e)ol)e any in)ol)ing dynamics and
mechanism inside structured soul's satisfaction A justification looking for any
leaf like liable laws.
Canufacturing industry0=333232bi!ary={3=!o }{2=eista!ce }{3=false }{2=true }
Canufacturing industry A implement, install, enhance, impro)e, in)ent,
intend, ...., instruction inside intentional aim objects to be achie)able for anysoul's satisfaction across mode's insight and modeling intelligence.
(ence, the233
1 =70=07 is )ery interest and important symbolic synchronized sign to implement, install,
intend, and enhance instruction across any manufacturing dynamics and mechanism during justifying symbolic
signed synchronization across knowledge cultures, mode insight, modeling intelligence, mathematical
intentional secrets and manufacturing industry.
Therefore, this =
233
1 =07 is the symbolic synchronized dynamics to proceed within any system economy
and financial effects in order to allow any component, any nuclear element inside the corresponding society to beali)e within his en)isage soul's satisfaction at any time, wherby the motor kernel of such a signed simulation is
the timing mechanism to flow any focus on fashion flow's of energy enhancements inside any possible probable
en)ironment reality flow handling function forms across adjustment "judge any ad)ances of possible probable
arrangement.
/urthermore, the this =
233
1 =07 has to judge the symbolic synchronized sign of work and job scheduling
within any smart smooth society, within the mathematical intentional surrounding symbolic adjustment
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mechanism, justification of twenty fi)e " 70= this =233
1 =07 could then be the first focus on fatal function
form of discrete e)ent simulation to judge working dynamics inside the selecti)e signed elementary component
in)ol)ing within any possible probable society.
Figure . ma&or most real operati!g dy!amics, "hich evolve mag!etic effects, impleme!ted mathematical i!sight acrossmode i!spiratio! a!d modeli!g i!tellige!ce a!d i!vestigatio! of a!y approval porposal differe!tial e#uatio!s across u!der
co!sumer$s seal simulatio!%
(ence, figure 1 is showing the major most real operating dynamics, which e)ol)e magnetic effects, implemented
mathematical insight across mode inspiration and modeling intelligence and in)estigation of any appro)al
porposal differential equations across under consumer's seal simulation. Thus, to resol)e the appro)al prposal
differential equal in such a function formD
a%7 f( ) t7
+b% f() t +c%f()=3 "e#uatio! 1
whereby thef()is focus on function form of en)isage corresponding major mathematical intentional surroundingad)ancing motor implementation of signal adjustment maintaining the proposal system architecture.
:)en though, to resol)e the appro)al proposal differential equation for any possible compleB system, whose
)aluable )ariable eBtensible components are the inductor's effects, the capacitor's aspects, then the motor kernel
flows, is huge hard hierarchy homes of intentional in)estigation across non linear systems and signal adjustment
for any symbolic synchronized ad)ances within the appro)al proposal society signs.
Therefore, twenty fi)e years "2* years of work should be enough to allow any another to get into working
dynamics at any needed time, whose huge hard hierarchy home of soul's sanctification is to bring a safe security
up. (ence, the major most signification question is what is a safe soul's satisfaction surround security. (ence, atany timing simulation processing, the major primordial principle is to assign the mapping pairing (start up, e!d
off)for any possible probable token simulation processing. Thus, the this =2331 =07 rules the major main
real operating thread task to fiB any focus on function form of symbolic synchronized signed safe society, the
shining *start up- node "consumer or any real main major operating focal function form is the age of be able to
distinguish between *this is true- and * this is false-.
Therefore, the childhood needs the parenthood to permit a solid sure safe soul's satisfaction for being at summit
of symbolic synchronized safe society in)ol)ing the smart smooth signs of science to be applied for any human
aim object to reach the desirable symbolic synchronization within the safe scientific symbols.
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/urthermore, "1* years, ** years could be the mapping pairing couple for (first start up, last start up)of any
possible probable job processing "get up into working thread task proceeding. (ence, because the soul's
satisfaction of any human person is searching any safe signed security across summit and symbolic scheduling at
any possible probable timing simulation during any period of time starting from the possible probable 20Eyear of
be ready to begin a huge hard shining signs of incoming money from different source in order to choose the
basic built in processing for a fiBing focus on fatal function form, which has to define a refleBi)e aim object and
desirable wishes. ecause, the random processing, whereby the stochastic, probabilistic, statistical and chaotic
dynamics should be always applied to enhance and support any symbolic synchronized effect of makingcompleBity within the fatal focus on segment 0, 1, whereby the major most signed mathematical intentional
secrets should engender and en)elop any following function form within the mathematical insight as belowD
measurable amount
quantity within any
possible probable
dynamic design,whereby something
clear A
clear =mathematical
intentional
surrounding
adjustments
mounting
illustrations
mathematical implementation A mode insight and modeling intelligence to allowjustification of using job scheduling within any applied math such that D
{if ( (f() > a) (f() < #)) then do{instruction statements; many as it could be}
mapping pairing couple
" y A(sin7( )cos7())7
sin
7
()%cos7
()
, z Asin
7()%cos7()
(sin7
()cos7
())
7
or mapping pairing couple
" y A sin7() , z A cos7()
or mapping pairing couple
" y A 2+ 2
sin7()
, z A 2+ 2
cos7()
or mapping pairing couple
" y A tan7() , z A
2
tan7()
> A apply ="clear, not, "amount, e)ent, "process, in)est, "strip+up, until,
transaction+adjust, conser)e> function form of thought to assign something clear eBactly true inside system
economy and financial effects-, has to e)ol)e the manufacturing industry in)ol)ing inside huge hard hierarchy
homes of using technology. Therefore, to apply this primordial principle of ="clear, not, "amount, e)ent,
"process, in)est, "strip+up, until, transaction+adjust, conser)e> function form of thought to assign somethingclear eBactly true inside system economy and financial effects-, the application of huge hard high holy ooks
should be the subject of anyone has interest within this subject. :)en though, the major main real operating
dynamics inside system economy and financial effect is the following focus on function form defined below as
followsD
+i!come
parts=H={ +i!come parts=H
H ,1. ( +
i!come
parts=H
+i!come
parts=H
H )0
}
(ence, the 1. mo!ey
i!comesource=+
0is an intentional implementation of incoming money to deli)er to any
required dynamics inside the symbolic synchronized society. Thus, this four times 1. [f()
0 ] , wherebyf()is
the fatal focus on function form to define the incoming money at any timing simulation. Therefore, the four ".
is a basic built in integer number to progress within any system economy and financial effect during the
determining of the suitable smart system inside the financial effect's measurable processing.
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(ence,figure is showing the main real operating illustration ofmo!ey
i!comesource=+
0to e)ol)e the sequential
dynamics across mode insight at any symbolic synchronized society searching to de)elop the modeling
intelligence mechanism.
In fact, the integer number four "1 depicts four primordial principle distinct of symbolic synchronized sign
kinds inside any possible probable society. Thus, these four kinds of symbolic synchronized signs areD
(a) !earest compo!e!ts (huma! perso!s) to correspo!di!g perso! i!volvi!g i!side
1. mo!ey
i!comesource=+
0
(b) losi!g security$s perso! belo!g to the e!visage perso! such that this perso! if ide!tified by
1.mo!ey
i!comesource=+
0
(c) for a!y perso!, "ho has !o i!come belo!g to a!y perso! i!volvi!g i!side 1.mo!ey
i!comesource=+
0
(d) for a!y perso!, "ho does !ot has e!ough mo!ey to live belo!g to a!y perso! i!volvi!g i!side
1. mo!ey
i!comesource=+
0%
/urthermore, the system eocnomy is e)ol)ing within any symbolic synchronized society, whereby the
go)ernment ahead knows how to identify any kind of the four defined abo)e cathegories, any person in)ol)ing
within 1. mo!ey
i!comesource=+
0, has to deli)er the go)ernment system the required money to be deli)ered to
any kind of the four cathegories "defined abo)e in order to get into the soul's satisfaction within *be smart be
my smooth desirable aim object- adage and hand ons.
In fact, the main real operating job scheduling is to assign any possible probable symbolic synchronized
keyword's system engendering signal archichtectures and handling signal adjustments for any possible probabletiming simulation in)ol)ing within any principle of discrete e)ent simulation.
(ence, the follow appro)al proposal surround symbolic synchronized set A (clear, !ot), (amou!t, eve!t),
(process, i!vest), (stripup, u!til, tra!sactio!ad&ust, co!serve)4 fu!ctio! form of thought to assign
something clear eBactly true, has to rule any sequential digital transaction during timing simulation.
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Figure 5 the mai! real operati!g variatio! of
mo!eyi!come
source=+(1.mo!ey
i!comesource=+
0 +
mo!eyi!come
source=+
H ) to support a!y sysetm eoc!omy a!d
fi!a!cial predictio! illustratio! duri!g sy!chro!i/i!g a!y symbolic society "ithi! the sig!ed dy!amics i!volvi!g i!side a!y
huge hard higher holy 6oo'%
In fact,figure 5is showing the D the main real operating )ariation of
mo!eyi!come
source=+(1. mo!ey
i!comesource=+
0 +
mo!eyi!come
source=+
H ) to support any sysetm eocnomy and
financial prediction illustration during synchronizing any symbolic society within the signed dynamics in)ol)ing
inside any huge hard higher holy ook.
Therefore, the symbolic synchronized surrounding set A {(clear, not), (amount, event), (process, i=invest),
(strip, transaction)}, has to trace any transaction dynamics across signal's
adjustment and system's architecture. Therefore, tra!sactio!={ S(t=!%7) i=3,...,! } , just choose pairing couple(!, i)to identify the major most signal in)ol)ing within any possible probable transaction, such that
tra!sactio!={ S(t=!%7) i=3,...,! }
Thus, a transaction is a set of signal to be used within any further processing, the e)ol)ing dynamics across
signal's adjustment and system's architecture, whom )aluable )ariable eBtensible a)ailable surrounding
measurable intentional symbolic synchronized set A {(clear, not), (amount, event), (process, i=invest),
(strip, transaction)}, has to handle any possible probable fuzzy, genetic andmimetic approaches.
In fact, the ruling processing of any job scheduling is to eBploit the main real operating threads, task, principles,
acts, and dynamics of the symbolic synchronized surrounding set =fetch, decode, eBecute, encode, write back>.
Thus, the {(clear, not), (amount, event), (process, i=invest), (strip, transaction)},
has to handle any possible probable huge hard hierarchy homes of job scheduling in)ol)ing the primordial
principle dynamics of symbolic synchronized surrounding set =fetch, decode, eBecute, encode, write back>, the
associate mode's insight within such a job scheduling processing is defined as followsD
0
100
200
300
400
500
600
700
800
mo!eyi!come
source=+(1.mo!ey
i!comesource=+
0 +
mo!eyi!come
source=+
H )
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1% fetch a tra!sactio! of sig!als - amou!t #ua!tity of sig!als i!volvi!g discrete eve!t simulatio! of ma&or
a!d mi!or occurre!ces of surrou!d sy!chro!i/ed symbolic eve!ts%
2% decode e!visage tra!sactio! - ad&ust(e!visage tra!sactio!) 88 co!serve its e!tities (compo!e!ts) to
be ha!dled i!side the proposal processi!g (&ob scheduli!g)%
3% eecute - process i!volvi!g a!y slidi!g "i!do" slice processi!g "ithi! mappi!g pair strip$
.% e!code - usi!g clear - mathematical i!te!tio!al secrets across modulatio! processi!g to e!vlop a!y
possible probable se#ue!tial digital tra!sactio! (mode$s i!sight across pairi!g (clear - f(), !ot - ratio
of o!e to clear))%
*% "rite bac' - e!viro!me!t reality flo" of tra!sactio!s to co!serve (store) i!volvi!g discrete eve!tsimulatio! of ma&or a!d mi!or occurre!ces of surrou!d sy!chro!i/ed symbolic eve!ts%
Therefore,
clear
mathematical illustration A
mapping pair
" y A(sin7()cos7())7
sin7()%cos7()
, z Asin
7()%cos7()(sin7()cos7())7
or mapping pair
" y A sin7( ) , z A cos7()
or mapping pair
" y A 2+ 2
sin7()
, z A 2+ 2
cos7()
not !ot(clear) - virtualism - usi!g i!volvi!g &ob scheduli!g - S9 - should advise -"hile(co!strai!t co!ditio!s) do i!structio! stateme!ts:44 88 M; - mode$s i!sight -
middle average dy!amics - (a-a 88 b -) 244
amount a!y measurable amou!t #ua!tity - search surrou!di!g system to be used i!side
measurable dy!amics a!d mecha!ism
e)ent eve!t - (! such that t-!%7, value - somethi!g clear to be defi!ed) - deep i!vestigatio!
of discrete eve!t simulatio!
m A mo)e to cha!ge i! positio! from o!e poi!t to a!other, to progress i! se#ue!ces, to progress
to"ard a particular state or co!ditio!, to follo" a specified course, to start off: depart
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i A in)est
strip to damage or brea' the threads of (of a!y possible probable co!servi!g tra!sactio! bloc'),
to mou!t (a!y bi!ary basic built i! tra!sactio! bloc' to be co!served for further use), to
clear of a !atural coveri!g or gro"th(to i!volve a!y similar ge!etic dy!amics "ithi!
correspo!di!g processi!g), to fall a"ay (apply mai! real operati!g pri!ciples of discrete
eve!t simulatio!)
transaction A tra!sactio!={ S( t=!%7) i=3,...,! }
HWIN_EXPORT virtual void DoOnMenuCommand(Message& message!
typedef struct tagMSG { HWND "#nd! $INT message!
WP%R%M #Param! P%R%M lParam! DWORD time! POINT 't! M)*+ ,PM)*+ NE%R ,NPM)*+ -%R ,PM)*!
class Message : public tagMSG.'u/li01 t2'ede3 RE)$T Result!
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Result result! /ool "andled!
Message( 1 result(4+ "andled(3alse . memset(&"#nd+4+si5eo3(tagM)*!
!
HWIN_EXPORT std11s"ared_'tr6MenuHandle7 Menu8ar11CreateHandle(
. HMEN$ "Menu 9 11CreateMenu(! i3(:"Menu . T"ro#astO)Error(! auto result 9 std11ma;e_s"ared6MenuHandle7("Menu+true! return result!
HWIN_EXPORT Menu8ar11Menu8ar( 1 8ase(CreateHandle(. %dd)t2le(MN)_NOTI-
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*+-/O$ 'idMenu::2'OnMenu3'mmand(Message4 message)
{ OnMenu3'mmand(message)!
if(5message.6andled)
{
intp'siti'n 7 message.8/aram!
std::s6aredptr#Menu*tem% item 7 Get*tem(p'siti'n)!
if(item)
{ item9%2'OnMenu3'mmand(message)! " ""
*+-/O$ 'id3'ntr'l::2'OnMenu3'mmand(Message4 message)
{ OnMenu3'mmand(message)!
if(5message.6andled)
{ M-+ 6Menu 7 (M-+)message.l/aram!
if(6Menu)
{ aut' menu 7 Menu::Getr'mMenuMap(6Menu)!
if(menu)
{ menu9%2'OnMenu3'mmand(message)! " " ""
*+-/O$ 'id3'ntr'l::2'On2ra8*tem(Message4 message)
{
On2ra8*tem(message)! if(5message.6andled)
{ 2&*$-MS$3$; dra8*temStruct 7 (2&*$-MS$3$;)message.l/aram!
if(dra8*temStruct 44 dra8*temStruct9%3tl$ype 77 O2$M-+)
{ Menu*tem; menu*tem 7 (Menu*tem;)dra8*temStruct9%item2ata!
if(menu*tem)
{
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menu*tem9%2'On2ra8*tem(;dra8*temStruct)!
message.6andled 7 true! message.result 7 true!
" " ""
*+-/O$ 'id3'ntr'l::2'OnMeasure*tem(Message4 message)
{ OnMeasure*tem(message)!
if(5message.6andled)
{ M-&S-*$-MS$3$; measure*temStruct 7 (M-&S-*$-MS$3$;)message.l/aram!
if(measure*temStruct 44 measure*temStruct9%3tl$ype 77 O2$M-+)
{ Menu*tem; menu*tem 7 (Menu*tem;)measure*temStruct9%item2ata!
if(menu*tem)
{ menu*tem9%2'OnMeasure*tem(;measure*temStruct)!
message.6andled 7 true! message.result 7 true!
" " ""
*+-/O$ 'id3'ntr'l::andleMessage(Message4 message)
{
s8itc6(message.message)
{.
.
caseM2&*$-M:
t6is9%2'On2ra8*tem(message)!
break!
. .
caseMM-&S-*$-M:
t6is9%2'OnMeasure*tem(message)!
break! caseMM-+3OMM&+2:
t6is9%2'OnMenu3'mmand(message)!
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break!
. .
""
*+-/O$ Menu*tem4 Menu*tem::2'On&dd()
{
aut'menu 7 /arentMenu()! if(menu)
{ M-+*$-M*+O inf'!
t6is9%*nitialiase!
*+-/O$ Menu*tem( )!
*+-/O$ ?Menu*tem( )!
*+-/O$ std::s6aredptr#Menu*tems% /arentMenu*tems() c'nst! *+-/O$ std::s6aredptr#Menu% /arentMenu() c'nst! *+-/O$ int*nde=Of( ) c'nst!
*+-/O$ std::s6aredptr#>itmapandle% >itmap() c'nst!
*+-/O$ Menu*tem4 Set>itmap(std::s6aredptr#>itmapandle% t6e>itmap)!
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*+-/O$ std::s6aredptr#>itmapandle% 36ecked>itmap() c'nst!
*+-/O$ Menu*tem4 Set36ecked>itmap(std::s6aredptr#>itmapandle% t6e36ecked>itmap)!
*+-/O$ std::s6aredptr#>itmapandle% nc6ecked>itmap() c'nst!
*+-/O$ Menu*tem4 Setnc6ecked>itmap(std::s6aredptr#>itmapandle% t6enc6ecked>itmap)!
*+-/O$ b''l*s36ecked() c'nst! *+-/O$ Menu*tem4 Set36ecked(b''lalue 7 true)!
*+-/O$ b''l*s2efault() c'nst! *+-/O$ Menu*tem4 Set2efault(b''lalue 7 true)!
*+-/O$ b''l*s2isabled() c'nst! *+-/O$ Menu*tem4 Set2isabled(b''lalue 7 true)!
*+-/O$ b''l*s-nabled() c'nst! *+-/O$ Menu*tem4 Set-nabled(b''lalue 7 true)!
*+-/O$ b''l*sGrayed() c'nst!
*+-/O$ Menu*tem4 SetGrayed(b''lalue 7 true)!
*+-/O$ b''l*sig6lig6ted() c'nst! *+-/O$ Menu*tem4 Setig6lig6ted(b''lalue 7 true)!
b''st::signals@::signal#'id( Menu*tem; sender )% On3lick! b''st::signals@::signal#'id( Menu*tem; sender, M-&S-*$-MS$3$4 measure*temStruct )%OnMeasure*tem! b''st::signals@::signal#'id( Menu*tem; sender, 2&*$-MS$3$4 dra8*temStruct )% On2ra8*tem!pr'tected: *+-/O$ irtualMenu*tem4 2'On&dd()! *+-/O$ irtualMenu*tem4 2'Onem'e()! *+-/O$ irtualc'nstMenu*tem4 pdateMenu*tem() c'nst! *+-/O$ irtualc'nstMenu*tem4 *nitialiase! eader3'ntr'l'rm()!
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pr'tected: irtual'id2'On*nitiali
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"
'id eader3'ntr'l'rm::2'On/aint(Message4 message)
{ >ase::2'On/aint(message)! aut' dc 7 std::makes6ared#/aint2eice3'nte=tandle%(&s#3'ntr'l%())! dc9%2ra82eskt'pall/aper()!"
'ideader3'ntr'l'rm::2'OnSi! stati0 0onst #0"ar_t de3aultPadC"ara0ter 9 ?@AB4?! )tring(! )tring(0onst )tring& ot"er! )tring(si5e_t2'e lengt"+ #0"ar_t 0! )tring(0onst #0"ar_t, str+si5e_t2'e lengt"+
#0"ar_t 'adC"ara0ter 9 de3aultPadC"ara0ter ! )tring(0onst #0"ar_t, str+si5e_t2'e lengt"+
0onst #0"ar_t, strB+ si5e_t2'e lengt"B+#0"ar_t 'adC"ara0ter 9 de3aultPadC"ara0ter!
)tring(0onst #0"ar_t, str+si5e_t2'e lengt"+0onst #0"ar_t, strB+si5e_t2'e lengt"B+0onst #0"ar_t, str+si5e_t2'e lengt"+#0"ar_t 'adC"ara0ter 9 de3aultPadC"ara0ter!
)tring(0onst #0"ar_t, str! )tring()tring&& ot"er! )tring(!
)tring& o'erator 9 (0onst )tring& ot"er! )tring& o'erator 9 (0onst #0"ar_t, str!
)tring& o'erator 9 ()tring&& ot"er!
int Com'areTo(0onst )tring& ot"er 0onst! int Com'areTo(0onst #0"ar_t, str 0onst!
/ool o'erator 99 (0onst )tring& ot"er 0onst! /ool o'erator :9 (0onst )tring& ot"er 0onst! /ool o'erator 69 (0onst )tring& ot"er 0onst! /ool o'erator 6 (0onst )tring& ot"er 0onst! /ool o'erator 79 (0onst )tring& ot"er 0onst! /ool o'erator 7 (0onst )tring& ot"er 0onst!
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/ool o'erator 99 (0onst #0"ar_t, str 0onst! /ool o'erator :9 (0onst #0"ar_t, str 0onst! /ool o'erator 69 (0onst #0"ar_t, str 0onst! /ool o'erator 6 (0onst #0"ar_t, str 0onst! /ool o'erator 79 (0onst #0"ar_t, str 0onst! /ool o'erator 7 (0onst #0"ar_t, str 0onst!
)tring& %''end(0onst )tring& ot"er! )tring& %''end(0onst #0"ar_t, str+ si5e_t2'e lengt"! )tring& %''end(0onst #0"ar_t, str!
)tring %''ended(0onst )tring& ot"er 0onst! )tring %''ended(0onst #0"ar_t, str 0onst!
)tring& o'erator F9 (0onst )tring& ot"er! )tring& o'erator F9 (0onst #0"ar_t, str!
3riend )tring o'erator F (0onst )tring& str+0onst )tring& strB! 3riend )tring o'erator F (0onst )tring& str+0onst #0"ar_t, strB!
si5e_t2'e lengt"( 0onst! si5e_t2'e engt"( 0onst! 0onst #0"ar_t, 0_str( 0onst! #0"ar_t, 0_str(!
si5e_t2'e IndeAO3%n2O3 ( 0onst #0"ar_t ,sear0"C"ars+ si5e_t2'enum/erO3)ear0"C"ars+
si5e_t2'e start 9 4 0onst! si5e_t2'e IndeAO3%n2O3 ( 0onst )tring& sear0"C"ars+ si5e_t2'e start 9 4 0onst! si5e_t2'e IndeAO3%n2O3( 0onst #0"ar_t, sear0"C"ars+ si5e_t2'e start 9 4 0onst!
si5e_t2'e IndeAO3%n28ut ( 0onst #0"ar_t ,sear0"C"ars+ si5e_t2'enum/erO3)ear0"C"ars+
si5e_t2'e start 9 4 0onst! si5e_t2'e IndeAO3%n28ut ( 0onst )tring& sear0"C"ars+ si5e_t2'e start 9 40onst! si5e_t2'e IndeAO3%n28ut( 0onst #0"ar_t, sear0"C"ars+ si5e_t2'e start 9 40onst!
si5e_t2'e astIndeAO3%n2O3 ( 0onst #0"ar_t ,sear0"C"ars+ si5e_t2'enum/erO3)ear0"C"ars+
si5e_t2'e start 9 n'os 0onst! si5e_t2'e astIndeAO3%n2O3( 0onst )tring& sear0"C"ars+ si5e_t2'e start 9 n'os0onst!
si5e_t2'e astIndeAO3%n2O3( 0onst #0"ar_t, sear0"C"ars+ si5e_t2'e start 9 n'os0onst!
si5e_t2'e astIndeAO3%n28ut ( 0onst #0"ar_t ,sear0"C"ars+ si5e_t2'enum/erO3)ear0"C"ars+
si5e_t2'e start 9 n'os 0onst! si5e_t2'e astIndeAO3%n28ut( 0onst )tring& sear0"C"ars+ si5e_t2'e start 9 n'os0onst! si5e_t2'e astIndeAO3%n28ut( 0onst #0"ar_t, sear0"C"ars+ si5e_t2'e start 9n'os 0onst!
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" "
return;t6is!
"
*+-/O$ std::s6aredptr#Menu% Menu*tems::Menu() c'nst
{
if('8ner)
{
return '8ner9%&s#6arlinn::8ind'8s::Menu%()!
"
return std::s6aredptr#6arlinn::8ind'8s::Menu%()!
"
classMenu*tems
{
public: typedefstd::ect'r# std::s6aredptr# Menu*tem % % ect'r!priate: friendclassMenu!
Menu; '8ner! ect'r items!
public:
*+-/O$ Menu*tems(Menu; t6eO8ner)! *+-/O$ ?Menu*tems( )!
*+-/O$ std::s6aredptr# $e=tMenu*tem % &ddMenu*tem( c'nst8c6art; t6e$e=t )! *+-/O$ std::s6aredptr# $e=tMenu*tem % &ddMenu*tem( c'nstString4 t6e$e=t )!
*+-/O$ std::s6aredptr# Separat'rMenu*tem% &ddSeparat'r()!
*+-/O$ std::s6aredptr# SubMenu*tem % &ddSubMenu(c'nst8c6art; t6e$e=t)! *+-/O$ std::s6aredptr# SubMenu*tem % &ddSubMenu(c'nstString4 t6e$e=t)!
*+-/O$ std::s6aredptr# Menu % Menu() c'nst!
*+-/O$ Menu*tems4 &dd( std::s6aredptr# Menu*tem % menu*tem)! *+-/O$ Menu*tems4 em'e( std::s6aredptr# Menu*tem % menu*tem)!
*+-/O$ int *nde=Of(std::s6aredptr# c'nstMenu*tem% menu*tem) c'nst! *+-/O$ std::s6aredptr# c'nstMenu*tem % *tem(intp'siti'n) c'nst! *+-/O$ std::s6aredptr# Menu*tem % *tem(intp'siti'n)!
"!
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template#typename$%
std::s6aredptr#c'nst$% &s() c'nst
{
returnstd::dynamicp'intercast#c'nst$,c'nstObDect%(s6aredfr'mt6is())!
"
template#typename$%
std::s6aredptr#$% &s(){
return std::dynamicp'intercast#$,ObDect%(s6aredfr'mt6is())!
"
template#typename$%b''l*s() c'nst
{
aut'd'8ncasted 7 &s#$%()! if(d'8ncasted)
{
returntrue!
"
returnfalse!
"
*+-/O$ Menu::Menu(std::s6aredptr#Menuandle% menuandle)
: >ase( ),6andle( menuandle )
{ if(menuandle)
{ M-+ 6Menu 7 menuandle9%GetM-+()!
if(6Menu)
{
&dd$'MenuMap(6Menu,t6is)!
" "
items 7 std::makes6ared#Menu*tems%(t6is)!
"
*+-/O$ Menu4 Menu::&ddStyle(2O2 style) {
M-+*+O menuinf' 7 {si
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SetMenu*nf'(menuinf')!
return;t6is!
"
*+-/O$ std::s6aredptr#>itmapandle% >itmapandle::A'adr'mile(c'nstString4 t6eileMame)
{
aut'fact'ry 7 *magingact'ry::3reate()! aut'dec'der 7 fact'ry.3reate2ec'derr'milename(t6eileMame)! aut'frame 7 dec'der.Getrame(0)! aut'result 7 frame.&s>itmapandle()! returnresult!
"
'id My'rm::*nitialiar()
{ aut' self 7 &s#My'rm%()!
aut' file+e8Menu*tem 7 makec'mp'nent#$e=tMenu*tem%(self,AB4+e8B)! aut' fileOpenMenu*tem 7 makec'mp'nent#$e=tMenu*tem%(self,AB4OpenB)! aut' fileSaeMenu*tem 7 makec'mp'nent#$e=tMenu*tem%(self,AB4SaeB)!
aut' fileSeparat'r 7 makec'mp'nent#Separat'rMenu*tem%(self)!
aut' file-=itMenu*tem 7 makec'mp'nent#$e=tMenu*tem%(self,AB-4=itB)!
file+e8Menu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 AB+e8 selectedB! *nalidateect()! ")! fileOpenMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 ABOpen selectedB!*nalidateect()! ")! fileSaeMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 ABSae selectedB!*nalidateect()! ")!
file-=itMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ 3l'se()! ")!
aut' fileSubMenu 7 makec'mp'nent#SubMenu*tem%(self,AB4ileB)!
fileSubMenu9%&dd(file+e8Menu*tem)! fileSubMenu9%&dd(fileOpenMenu*tem)! fileSubMenu9%&dd(fileSaeMenu*tem)! fileSubMenu9%&dd(fileSeparat'r)! fileSubMenu9%&dd(file-=itMenu*tem)!
aut' editSubMenu 7 makec'mp'nent#SubMenu*tem%(self,AB4-ditB)!
aut' edit3utMenu*tem 7 editSubMenu9%&ddMenu*tem(AB3u4tB)! aut' edit3'pyMenu*tem 7 editSubMenu9%&ddMenu*tem(AB43'pyB)! aut' edit/asteMenu*tem 7 editSubMenu9%&ddMenu*tem(AB4/asteB)! edit3utMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 AB3ut selectedB! *nalidateect()! ")! edit3'pyMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 AB3'py selectedB!*nalidateect()! ")! edit/asteMenu*tem9%On3lick.c'nnect(F4(Menu*tem;){ te=t 7 AB/aste selectedB!*nalidateect()! ")!
aut' ie8SubMenu 7 makec'mp'nent#SubMenu*tem%(self,AB4Hie8B)!
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aut' ie8$ime 7 ie8SubMenu9%&ddMenu*tem(AB4$imeB)!
ie8$ime9%On3lick.c'nnect(F4(Menu*tem;) {
2ate$ime n'8 7 2ate$ime::+'8()!
if(n'8.*s2aylig6tSaing$ime())
{
te=t 7 n'8.$'String() I AB 2aylig6t saing timeB!"
else
{
te=t 7 n'8.$'String() I AB Standard timeB!
"
*nalidateect()!")!
aut' menu>ar 7 makec'mp'nent#Menu>ar%(self)!
menu>ar9%&dd(fileSubMenu)!
menu>ar9%&dd(editSubMenu)! menu>ar9%&dd(ie8SubMenu)!
SetMenu(menu>ar)!"
V. Conclusion:
In fact, the main real operating surrounding mathematical intentional amount quantity to judge the proposal
appro)al wa)eform compression is the ofte!chari
=vect?%si/e ( )i
=(sin7( )i
)( vect?%si/e ( )i
) , which defines
the number of appearance and occurrence of stored bytes inside the corresponding file. (owe)er, the huge hardhome hierarchy is to find the position where should the focus on @byte - charAbe back stored inside during the
decompression mechanism.
Therefore, the synchronization processing has to be in)ol)e within the old structure of pipeline architecture
@first o! first outA, to allow the chosen float )alue to be belong to any @first o! first outApipeline structure
associate within this wa)eform compression dynamics.
(ence, search to identify any possible probable charEposition or byteEposition within the files en)isage for any
mechanism of decompression, is the huge hard subject across this wa)eform comrpession methedology.
/urthermore, the in)ol)ing of mathematical intentional amount quantity sin7 ()
chari
=
(vect?%si/e ( )char
i
)
(2+ vect?%si/e ()chari
),
is the motorr kernel of *mIsF- primordial principle, whereby the symbolic synchronization processing to any
possible probable mathematical insight of any possible probable wa)eform compression or system economy or
financial effect or robust control or transmission's transportation aspect including the old structures of huge hard
hierarchy homes of ratios (ss=2
p)(ss=p) for any possible probable p[3, 2] , which has to flow
within the main real operating dynamics of using mathematical insight across the lim(lo"=B3)f( ) and
lim(high=B 2)
f( ) for any probabilistic, stochastic, statistical and chaotic processing inside the old structured
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p[3,2] design in)ol)ing fuzzy, genetic and mimetic dynamics. Thus, Claude Sha!!o!6J since 241K did
define the main real operating p%l!(2
p) for any possible probable continuous description of information
theory for any p[3,2] , which measures the incertainity inside the corresponding mathematical insight.
:)en though, Said Mchaalia 2J did in)ent, based on the algorithms ofDempel andEiv0J , his aspect effect to
engender any possible probable information theory by using a function form of frequency processing inside the
discrete e)ent simulation principles such that e)ent A "n such that tAn.T, function form A
clear=sin
7() %cos7()(sin7()cos7())7
%sin (f(fre#ue!cy , time)) %ea7 pi
1. Thus, this function form of describing any
possible probable sequential digital data processing inside an amplification of )ariation le)el, which could reach
the Linfinite " + )alue to allow any possible le)el of magnitude amplification within any transmission'stransportation's kind.
8n the other hand, Said Mchaalia2J, did e)ol)e the obtanied results to be in)ol)ing within any fuzzy float
processing such that the mapping pairs "y A 2+2
cos7()
, z A 2+2
sin7()
or " y A
(sin7()cos7())7
sin
7
()%cos7
()
, z Asin
7()% cos7()
(sin7
( )cos7
())7
or " y A sin7() , z A cos7() could then be used
inside any possible probable job scheduling, which has been created by% D% Grahma!since 24HH 7J as
followsD
inside this eBample of con)erting fuzzy into float fuzzyD
;Ftemperature I< )ery cold 7HINstop fan
job scheduling associate math
;Ftemperature I< )ery cold cold B A cos7()
;Ftemperature I< )ery cold cold( )=cos7()=2
;Ftemperature I< middle coldcold( )=cos7()=
2
7
;Ftemperature I< cold 7HIN turn down fan
;F" cold( )=cos7()>2
7 7HIN @turn down fan-
;Ftemperature I< normal 7HINmaintain le)el;F" cold( )=cos7()=
2
7 7HIN *maintain le)el-
;Ftemperature I< )ery hot 7HINspeed up fan
;Ftemperature I< )ery hot 7HIN
speed up fanhot B A sin
7()
;Ftemperature I< )ery hot 7HIN
speed up fanhot( )=sin7()=2
;Ftemperature I< )ery hot 7HIN
speed up fan hot( )=sin7()=
2
7
job scheduling associate math
;Ftemperature I< hot 7HIN @light o! redA
;F" hot( )=2
7
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;Ftemperature I< normal 7HIN@light o!
gree!A;F" hot( )=sin7()=
2
7 7HIN @light o! gree!A
/urthermore, this surrounding architectural mathematical intentional secrets across signal adjustment and system
ad)ances has to be easy simple implemented within the mobile robot processing, when the main real dyanmicsshould be the e)ol)ing structures of symbolic sy!chro!i/ed {(clear, not), (amount, event), (process, i=invest),
(strip, transaction)} mode$s i!spiratio! across modeli!g$s i!tellige!ce%
III/ References:
2. :dwin $aroska,
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= less bytes, why because lossy compression techniques>
= more bytes, why because lossyless compression techniques>
GG )irtualism =custom "?practice followed by people of a particular group or region? A edge flow> and
=consumer "? one that consumes, especially one that acquires goods or ser)ices for direct use or ownership
rather than for resale or use in production and manufacturing.? A operating node inside ?first on, first off?
pipeline's principles
J
/urthermore, the main real operating huge hard hierarchy homes across the associate approach is to design
around similar float )alues, which could depict any possible )ariation of or any )ariation of for many different
processing kinds of using bytes inside major intentional secrets surrounding adjustments of and for any
corresponding signal adjusmtent across any possible probable system's architecture.
, where )ector defines the )ector position.
(ence, to resol)e the problem of finding easy simple position, where the associate byte has been stored, it is a
little bit hard to use this logical language of focus on function form of thought.
to co!serve, conser"ed, conser"ing, conser"es
v%tr%
#.
a. to protect from loss or harm! preser)eD calls to co!serve our !atio!al heritage i! the face of
be"ilderi!g cha!ge%
b. to use carefully or sparingly, a)oiding wasteD 'ept the thermostat lo"er to co!serve e!ergy%
$. to keep "a quantity constant through physical or chemical reactions or e)olutionary changes.
%. to preser)e "fruits with sugar.
v%i!tr%
To economizeDtried to co!serve o! fuel duri!g the lo!g "i!ter%
transactions
%$ 7he act of tra!sacti!g or the fact of bei!g tra!sacted%
$.
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N7"B2 R truth"B A A 2+
2
cos7()
N7"y2 R truth"y A A 2+
2
sin7()
7able 1 mai! real mathematical i!te!tio!al processi!g
In fact,table 1is showing the main real mathematical intentional processing across the defined fuzzy genetic
mimetic approach. (ence, the associate job scheduling to that defined fuzzy principle, when it is applied to aneBample of regulation of temperature, is the following focus of float processing based on the main real principles
of proposal mapping focus on pair " y A cos7() , z A sin7() en)elop "see table 2 for more details.
In fact, table 2 illustrates a real eBample of application of in)ol)ing fuzzy genetic mimetic approach across
temperature regulation processing. Thus, the proposal mapping focus on pair " y A cos7() , z A sin7()
en)elop "see table 2 for more details, has to play a great rule inside any possible probable job schedulingassociate within the e)ol)ing fuzzy rules as shown within the eBample of the table 2.
;Ftemperature I< )ery cold 7HINstop fan
job scheduling associate math
;Ftemperature I< )ery cold cold B A cos7()
;Ftemperature I< )ery cold cold( )=cos7()=2
;Ftemperature I< middle coldcold( )=cos7()=
2
7
;Ftemperature I< cold 7HIN turn down fan
;F" cold( )=cos7()>2
7 7HIN @turn down fan-
;Ftemperature I< normal 7HINmaintain le)el;F" cold( )=cos7()=
2
7 7HIN *maintain le)el-
;Ftemperature I< )ery hot 7HINspeed up fan
;Ftemperature I< )ery hot 7HIN
speed up fanhot B A sin
7()
;Ftemperature I< )ery hot 7HIN
speed up fanhot( )=sin7()=2
;Ftemperature I< )ery hot 7HINspeed up fan
hot( )=sin7()=27
job scheduling associate math
;Ftemperature I< hot 7HIN @light o! redA
;F" hot( )=2
7
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gree!A;F" hot( )=sin7()=
2
7 7HIN @light o! gree!A
7able 2 mai! real mathematical i!te!tio!al processi!g across the eample of temperature regulatio!
Therefore, by the assignment of the mathematical intentional surrounding arrays to be en)elop inside the
proposal mapping focus on pair " y A cos
7
() , z A sin7
() en)elop "see table 2 for more details, thelogics languages, which ha)e been defined within the oles's rules inside the processing within ooleanfunctions ";F + the! do i!structio! stateme!t4, whereby V should be oolean, could be easy simple in)ol)ing
within any possible probable mathematical intentional symbolization of +,- +,=- +- +=- or+=- as defined
within the eBample oftable 2.
Thus, hot( )=sin7()=2 is *True-, when the mathematical amount quantity hot( )=sin7()=2 is )alid.
/urthermore, the same could be done for the mathematical amount quantity hot( )=sin7()=2
7, the
mathematical amount quantity cold( )=cos7()=2
7, the mathematical amount quantity
hot( )=2
7
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(ence, the main real operating processing within any discrete e)ent simulation in)ol)ing inside the sequential
digital data processing should include the couple of "0,pi
1,
pi
1,
pi
7)% Why
Thus, the main real operating proceeding across fuzzy, genetic mimetic approaches, which ha)e been in)ol)ed
inside system's economy and financial effect 2,7,6, 1J, should then pro)e the engendering of the en)ironment
reality flow of symbolic synchronized society, whereby the smart safe smooth signs should ha)e identification
within any probable possible fuzzy, genetic mimetic approaches.
Figure * mai! real primordial pri!ciple of fu//y dy!amics
(ence,figure * illustrates the main real primordial principle of fuzzy dynamics. Though, the )ariation le)el
inside the main real operating wa)eforms of any possible probable fuzzy approaches is to start through *logics
language of eBactly true- or *logics language of eBactly false-.
Figure mai! illustratio! of describi!g effects i!side variatio! level logics of mappi!g pair (somethi!g clear is eactlyfu//y true, somethi!g clear is eactly fu//y false)%
Thus, using this following focus on of mapping pair " y A cos7() , z A sin7() en)elop to engender any
possible probable transaction trace's logics of sequential digital data processing, an amplification of magnitude
should be done. Therefore, this is could be then achie)ed, when using the main real principle of in)ol)ing
0
0.2
0.4
0.6
0.8
1
1.2
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magnitude intentional surrounding amplification inside D amplificatio!=sin
7() % cos7()(sin7()cos7())7
then all possible digital wa)eform's function form could be then in)ol)ing withinD
"aveform=sin
7() %cos7()(sin7()cos7())7
% sin(f(fre#ue!cy , time))%ea 7 pi
1
Figure 5 i!volvi!g amplificatio!=sin
7() %cos7()(sin7()cos7())7
i!side a!y possible probable dy!amics of mag!itude
amplificatio! to achieve huge hard home hierarchy of mag!itude modulatio!%
(ence,figure 5is showing the main real procedure across the mechanisms in)ol)ing
amplificatio!= sin
7
() %cos
7
()(sin7()cos7())7inside any possible probable dynamics of magnitude amplification to
achie)e huge hard home hierarchy of magnitude modulation.
Therefore, the mode's inspiration and modeling's intelligence across this {(clear, not), (amount, event),
(process, i=invest), (strip, transaction)} is to mount the secret signs of middle
a)erage processing, whereby the following focus on job scheduling {if({(& = (a'#)) (*hile ((a = a # =
&) ++ (a = & # = #))))should be done for any surrounding loop stament.
/urthermore, the mode's inspiration has to pro)e that the major significant sign's insight is to assign a slice of 0,
pi to any possible probable stair due to its manufacturing insight of being flat surface's line. Thus, figure 27
shows more idea's description to illustrate this main primordial principle of {(clear, not), (amount, event),
(process, i=invest), (strip, transaction)} dynamics to engender any following
focus on fuzzy logics language across system's economy, financial effects, robust control and transmission'stransportation of hea)y transaction traces.
:)en though, comparing to the main intentional dynamics across the {(clear, not), (amount, event), (process,
i=invest), (strip, transaction)}mode's insight, the old fuzzy focus feel weaker duenon robust processing, which has to be symbolized within any possible probable synchronization of
mathematical intentional secrets to adjust any signal architecture.
amplificatio!= sin7( ) % cos7( )
(sin 7()cos 7() )7
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In fact,figure Pis showing the main real principles of old fuzzy dynamics when this is applied to a regulation's
system of temperature across a robust control mechanism.
0ecrets across ma!!ing insight inside surround sym#olic {(clear, not), (amount, event), (process,i=invest), (strip, transaction)}
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conserve>)}dynamics, which is major intentional secret across the mathematical insight surrounding signal
adjustment and system's architecture.
Figure 11 all possible probable dy!amics a!d mecha!ism to be i!volvi!g "ithi! the ready evolvi!g theory surrou!d
symbolic {(clear, not), (amount, event), (process, i=invest), (strip, transaction)}dy!amics across mode$s i!spiratio! of modeli!g$s i!tellige!ce%
(ence,figure 15illustrates the main real states across the possible probable dynamics and mechanism to be
in)ol)ing within the ready e)ol)ing theory surround symbolic {(clear, not), (amount, event), (process,
i=invest), (strip, transaction)}dynamics across mode's inspiration of modeling's
intelligence.
Therefore, by proposing clear=sin
7() %cos7()(sin7()cos7())7
, which should depict any wa)eform inside the mode's
inspiration of any modeling's intelligence. (ence, starting by a black screen, to get up into the major insight of
the proposal appro)al mechanism inside any progress dynamics either within the system economy and financial
effects or within the robust control dynamics and regulation processing to continue within any )alid information
at the proposal appro)al black screen, the old theory of putpiel()function form could then allow the further
processing to identify the en)ironment reality flow of how should a huge hard situation be in)ol)ing within any
possible probable mathematical insight across signal adjustment and system's architecture dynamic designs.
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Thus, by proposing clear=sin
7() %cos7()(sin7()cos7())7
, a )aration le)el starting from nil "3 to reach the Linfinite
)alue could then be detected within a slice of 0,pi
1%
:)en though, the opposite symbolic signed )ariation le)el should be in)ol)ed within the ratio's theory, during
such a processing an assignment for a not clear should be equal to !ot clear=(sin7()cos7())7
sin7() %cos7(). Therefore,
for a such )ariation le)el of not clear )aluable amount quantity "mathematical intentional surrounding amounts
across signal adjustment in)ol)ing as illustrations byputpiel()function forms, has to reach the !il (0)at the
end of the proposal slice of 0,pi
1%
Figure 12 ma&or most ma!ufacturi!g desig! is to locate the putpiel() fu!ctio! form for a!y possible probable dy!amicdesig! across system eco!omy, fi!a!cial effect a!d robust co!trol mecha!ism%
Thus,figure 12 is illustrating the major most manufacturing design is to locate theputpiel()function form for
any possible probable dynamic design across system economy, financial effect and robust control mechanism.
(ence, the symbolic synchronized {(clear, not), (amount, event), (process, i=invest), (strip,
transaction)}dynamics has to pro)e the main real aim object of the similar to fuzzy, genetic
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mimetic approaches.
Therefore,
2. clear DD adjecti)e DD should be a mathematical intentional surrounding any amount quality across
measurable implementation. Thus, clear=sin
7() %cos7()
(sin
7
()cos
7
())
7is defined to depict the amplification
of any possible probable magnitude, due its )ariation le)el from nil "3 to Linfinite )alue in shortest
possible domain, which is equal to a slice of 0,pi
1% /urthermore, the measurable intentional
amount quantity clear=sin7() or clear=cos7() is defined to identify any possible )aluableamount quantity inside the proposal appro)al slice of 0, 1% :)en though, the main real operating thread
tasks across the sequential digital data processing is to satisfy the function form of focus on as below D
7. clear=sin
7() %cos7()(sin7()cos7( ))7
%sin (f(fre#ue!cy , time)) %ea7 pi
1, whereby for a such wa)eform, the
amplification of corresponding magnitude could reach the Linfinite. Thus, the clear=sin () couldthen define any possible frequency )ariation inside any possible probable sliding window's slice.
/urthermore, the mathematical intentional amount quantity clear=ea7 pi
1is used to enhance the
proposal phase modulation within any possible probable sequential digital data processing mechanism.
What is the basic binary built in of such a mathematical intentional amount quantity clear=ea 7 pi
1
(ence, the phase modulation has to add a mathematical intentional amount quantity inside the proposal {(clear,
not), (amount, event), (process, i=invest), (strip, transaction)} dynamics$
{(clear, not), (amount, event), (process, invest), (strip, transaction)} =
follo1ing fatal function form of thought to assign something clear exactly true
amplificatio!= sin7( ) % cos7( )
(sin 7()cos 7() )7
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Figure 13 measurable i!te!tio!al illustratio! of bi!ary built i! use of electrical e!ergy$s fashio! flo" i!side mode$s i!sightto achieve symbolic sy!chro!i/ed sig!ed society$s dy!amics a!d mecha!ism
In fact,figure 13illustrates the main real operating threads and tasks across the measurable intentional
illustration of binary built in use of electrical energy's fashion flow inside mode's insight to achie)e symbolic
synchronized signed society's dynamics and mechanism. Thus, the major manufacturing industry around theusage and e)o)ling de)elopments inside the battery set and the magnetic electronics effects to be always ready
for use within any possible probable speed up dynamics and electrical energy fashion flow to disco)er any huge
hard home hierarchies inside mathematical intentional secrets handling signal's adjustments and system's
architectures.
Therefore, the major main real aim object is to e)ol)e a system for better signal assignment during any rotation
motion to handle all possible probable symbolic synchronization at any timing simulation processing.
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/igure 21D o)er)iew of depicting dynamics across using the electrical energy's fashion flow to e)ol)e a huge hard hierarchy
home of measurable en)ironment reality flow.
(ence,figure 1.is showing an o)er)iew of depicting dynamics across using the electrical energy's fashion flow
to e)ol)e a huge hard hierarchy home of measurable en)ironment reality flow, whereby the main real operating
intentional idea is to flow within the pairing maps of couples (p!p, !p!)transistors. Thus, a transistor type
conser)ing the mechanism of amplifying the signal to allow any current edge flow for any possible probabletiming simulation. Thus, the motor kernel flow of current edge flow is to co)er any possible production of *new
electricity- just through using the rotation motion processing. Therefore, based on the following focus on works
of FmpereECaBwell, the main real measurable intentional secrets is to think up that the production of *new
electricity- is easier when the rotation motion has to start up a any timing simulation processing. Thus, first of
all, start up to rotate the required motor, then think up to use the in)ol)ing mechanism "*rotation motion
effects- to produce electrical energy's fashion flows at any possible probable motion's destinations.
/urthermore, the main real operating dynamics is to use the *rotation motion effect- in)ol)ing within Fmpere
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CaBwell de)elopments to enhance the usage of any possible probable battery set. Thus, use this *rotation motion
effects- to produce electricity, which should be inserted inside the battery sets to be used again by any possible
probable electrical tool within this car.
(ence, the major intentional secrets across soul satisfaction is to find ?something eBactly true?. e)en though,
other kind of fatal function form of thought is to assign ?something clear eBactly true right?. Que to the main
real operating ad)ances inside the electrical manufacturing dynamics design, the required en)ironment realityflow is to access so rapid so fast to the manufacturing of electrical cars and electrical trucks. (ence, this
mechanism is based on the number of times to change double battery set to flow across roads.
Therefore, the primordial principles of robust control is to search symbolic synchronized society to any possible
probable discrete e)ent simulation procedures, whereby the main real dynamic design is to assign any , wherethe n is the number of possibilities to change the double battery set "see figure 0 for more details during trips
and tra)els across streets and roads.
Therefore, it seems that ?something eBactly true? could ne)er be achie)able associate within any symbolic
synchronized society due the fatal focus on of any function form of thought, which is equal to any
assigned"major intentional study "in)estigation in Philosophical"including introduction Nogic "implementing
installation of inspiration's insight across ali)e symbolic synchronized society in)ol)ing any possible probablesoul's satisfaction.
Figure 1* somethi!g clear of QHD models "ithi! tra!sactio! defi!itio!s a!d processi!g duri!g a!y timi!g simulatio!
In fact,figure 1*illustrates something clear of (QN models within transaction definitions and processing
during any timing simulation.
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Figure 1 mai! real operati!g QHD code to ge!erate a!y memory desig! across a!y timi!g simulatio! 'i!d%
In fact,figure 1illustrates the main real operating (QN code to generate any memory design across any
timing simulation kind.
Therefore, the main real operating double pack of battery set has to transmit at any required time the symbolicsynchronized dynamic usage of )aluable a)ailable eBtensible energy's fashion flows. Though, the huge hard
hierarchy homes of interest is to think about the complete usage of operating double pack of battery set insidethe switching transaction trace of any possible surround signal architecture. In fact, the logics language of
*eBactly true- has to define its )ariation le)el to be the subject of identifying the required logics )alue, which
could then describe the main operating principles of logics language across any possible flows of transaction
trace.
/urthermore, to change any operating double pack of battery set at needed time, the system economy and
financial effect should be then an e)ol)ing traces to decide whether the de)eloped systems is a functional system
across the financial aspects and fashion's effects.
Therefore, for any street side stop, just one operation of change battery set should be done. (ow many timesshould this operation be done This is the question of any magnetic electronics searcher to allow the eBactly true
right answer for in)ol)ing discrete e)ent simulation within the symbolic synchronized signs of any actual
society. 8n the other hand, the main real operating thread task is to compact any fuzzy genetic mimetic approach
by the e)ol)ing dynamics of surround symbolic synchronized set, which is equal to ="clear, not, "amount,
e)ent, "process, iAin)est, "stair+up, down, transaction+adjust, conser)e> trace. (ence! using surround
symbolic synchronized set, which is equal to
{(clear, not), (amount, event), (process, i=invest), (stair, transaction)}trace,
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I/ 2rimordial !rinci!les of huge hard home hierarchy in"ol"ing 1ithin fatal focus on of any
function form of thought based on binary built in logics of ratios:
Figure 15 6attery set for a!y possible electrical rotatio! motio! processi!g
In fact,figure 15is showing the main real operating double pack of battery set to be used within the symbolic
synchronized society to a dynamic usage of )aluable a)ailable eBtensible energy's fashion flows. /urthermore,
for any possible surrounding stop, it is necessary to think )aluable a)ailable eBtensible energy's fashion flows
up. (ence, it is so easy simple to change the in)ol)ing double pack of battery to allow motion again.
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Figure 1O the mai! real variatio! level of i!volvi!g symbolic surrou!di!g {(clear, not), (amount, event),
(process, i=invest), (strip, transaction)} dy!amics%
In fact,figure 1Odepicts the main real )ariation le)el of in)ol)ing symbolic surrou!di!g {(clear, not), (amount,event), (process, i=invest), (strip, transaction)}dynamics, whereby the desirable
aim object is to include the old main real operating logical language of @9NAand @Ainside this in)ol)ingsymbolic surrou!di!g {(clear, not), (amount, event), (process, i=invest), (strip, transaction)}dynamics. Therefore, the logics language of across binary built in basics consist to assign a )aluable
)ariable of =i!fi!ite" + to any missing )ariable. Why should this occurQue to the knowledge culture processing across any possible probable logics's language adjusting mathematicalintentional secrets at any processsing of measurable core's processing, the measurable intentional surrounding
amount quantity should implement a )ariable of *missing-, *in)ol)ing within the stochastic chaotic probabilistic
statistical finite range 3, 2J within the )ariation le)el processing-, *quit any possible limitatio to become
=i!fi!ite" + , when the boundary limits ha)e to be in)estigated within-, *process into correlationprocessing for any possible float processing in)ol)ing wihtin the proposal appro)al mathematical amount
quantities across mapping "y A 2+ 2
cos7()
, z A 2+ 2
sin7()
. (ence, the main real operation to assign
is the logics *89-, which could be defined as *minus operation- descri)ed as followsD
y/=(2+ 2
cos7()
)(2+ 2
sin7()
)= 2
cos7()
2
sin7()
=sin
7()cos7()cos
7() % sin7()
8n the other hand, to reduce the proposal appro)al range of any possible probable )ariation, the focal focus on
mapping pair " y A(sin7()cos7())7
sin7()% cos7()
, z Asin
7()%cos7()(sin7()cos7())7
to depict any possible probable )ariation
of the proposal appro)al mathematical insight across the robust mode's inspiration to pro)e any modeling's
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intelligence inside the secrets attaching any signal adjustment and system architecture.
figure 24D main real fuzzy focus on function forms of the major most principles in)ol)ing inside the proposal en)isage
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lim
pi
7
(2+2
sin7()
) , or mathematical amount quantity of lim3
(2+2
sin7()
) could be easy simple
in)ol)ed within the old principles of fuzzy or job scheduling across the using following motor kernel of
procedure(), fu!ctio!() a!d mai!()programs across processing within any possible probable instruction
statement, where the *making decision- effect should be a *token simulation- at any possible probable timing
simulation to satisfy the en)ironment reality flow of job scheduling, timing simulation, fuzzy processing,
discrete e)ent simulation and any possible probable implementation of surrounding mathematical insight acrossmode's inspiration and modelling's intelligence to engender any constraint condition's processing e)ol)ing loop
statements. Therefore, the main real operating processing could be described as followsD
*hile(constraint condition)
do {
instruction statements
}processing to adjust, deli)er or store any transaction trace of sequential digital data.
Thus, during the e)ol)ing procedures of job scheduling, the main real opeating thread task is to in)ol)e
dynamics and mechanism to implement real jobs to co)er any possible probable desirable and aim object during
timing simulation, whereby the major most significant factor across this proposal appro)al job scheduling is to
define a symbolic synchronized timer to control the flowable time inside the corresponding timing simulation.
In fact, within any intentional mathematical secrets, the major factor is to in)ol)e the time unit inside any
possible function form processing. (ence, (+ - 2%pi%f%t = phi)is a mathematical intentional amount quantity to
define the )ariation of the timing simulation across the main real operating threads and tasks, whereby the
symbolic synchronized control is a timer.
/urthermore, the main real timing processing is to de)elop any possible probable time unit to be inside the major
most symbolic synchronized society to access, ad)ance, arrange and adjust processing, proceeding, thread, task,
job, scheduling, simulation, industry, manufacturing, system, signal and so on.
In fact, the main real operating processing is to use the discrete e)ent simulation principles as it should be real
defined, whereby the integer n is just an integer number in)ol)ing a numerical processsing inside *count a day
away to be aware- about the secrete signs of any possible probable discrete e)ent simulation principles. Then,
the main real operating processing is to define the function form of the corresponding processing across "@this,
where "@this is a pointer mounting the intentional surrounding ad)ances and adjustmens concerning any
possible probable mode's inspiration and modeling's intelligence.
Thus, change battery set is the main real operating desirable object of robust control inside this usage of
electrical car as it should, the mode's inspiration across electrical car is to e)ol)e a suitable and sufficientsystem's architecture to allow faster and smart change of any possible probable battery set during the street side
breaks.
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Figure 20 mai! real operati!g dy!amic processi!g across battery set usage duri!g the ma&or impleme!tatio! of electrical
car i!side the correspo!di!g symbolic sy!chro!i/ed society
(ence,figure 20illustrates main real operating dynamic processing across battery set usage during the major
implementation of electrical car inside the corresponding symbolic synchronized society to allow the huge hard
home hierarchy of applied discrete e)ent simulation principles, whereby the primordial dynamics searches at any
timing simulation to define the basic built in binary dream couple e)ent "n A times of change battery set during
the motion processing, )alue A function form of electrical energy's fashion flow inside the corresponding car.
hus, the main real operating thread tas-s across discrete event simulation is to assign huge hard home
hierarchy dynamics across any possi#le pro#a#le surrounding sym#olic synchroni.ation during any timing
simulation to achieve desira#le aim o#ject of mode/s inspiration and modeling/s intelligence during any
signal adjustment processing at any system/s architecture$
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Figure 21 Mai! real operati!g processi!g across symbolic sy!chro!i/ed {(clear, not), (amount, event), (process,
i=invest), (stair, transaction)}trace to improve the highest level of electrical e!ergy fashio!flo" i!side a!y sy!chro!i/ed sig!ed society%
In fact,figure 21illustrates the main real operating processing across symbolic synchronized {(clear, not),
(amount, event), (process, i=invest), (strip, transaction)}trace to impro)e the
highest le)el of electrical energy fashion flow inside any synchronized signed society.
herefore,sym#olic synchroni.ed sign {(0this) = %112 = s3r456 , such that 5 = 1%1% inside #inary #uilt in
#asics across logics} is the sym#olic synchroni.ed dynamics to proceed *ithin any system economy and
financial effects in order to allo* any component, any nuclear element inside the corresponding society to #e
alive *ithin his envisage soul/s satisfaction at any time, *here#y the motor -ernel of such a signed simulation
is the timing mechanism to flo* any focus on fashion flo*/s of energy enhancements inside any possi#le