symbolic surround signs across main intentional secret said mchaalia, susanne weber, jana bechstein,...
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Symbolic surround signs across main intentional secret
Said Mchaalia, Susanne Weber, Jana Bechstein, Elizabeth Schneider, Myelin
Sylvester, R. L. Grahman and Britney Spears
(draft copy, September 10th 2013)
Abstract
in fact, the surround symbolic synchronized secret of following focus on set
{(clear, not), (digit, event), (custom, consumer), (job scheduling, frequency's
fashion flow)}
modeling's dynamics mechanism, has the huge hard opportunity to replace
any old genetic mimetic approach design for desirable aim object if
involvement of dynamic job scheduling principles and main real operatingthread task around the discrete event simulation comply with the (slice of
time, event's value) dynamics architectural design. Hence, the slice of time is
a finite float values such as 21 pico seconds, 32 nano seconds, one year,
century, .... Though, the event's value is the valuable variable extensible
available secret of corresponding environment reality flow inside the segment
of float ]0, 1[ for human chaotic stochastic processing and around logics's
computing processing dynamics. Furthermore, the module dynamics such
that ||y|| = quadratic measurable core of its size or length inside a given
defined Euclidean plan has to fix the major most significant dynamics around
the computation secret to push the desirable modeling design inside the ]0,1[ by the effect aspect of probability and statistical modeling's dynamics
processing.
Hence, just by abs(y)/||y||, the processing could then be easy transformed
into the desirable segment ]0, 1[.
On the other hand, the frequency's fashion flow consist to define the
frequency to be inside the ratio of 1 to a desirable of found slice of time,
which was defined to be the period T. Hence, for any possible computing
around the transmission's transportation's dynamic design, the main real
operating thread task is to assign the needed dream couple
(period T, event's value) of following discrete event simulation to compute
inside the desirable job scheduling dynamics and then to elaborate the
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desirable function within the mathematical inspiration around the main real
principles of robust control such that : system's outputs(time) = function f
(system's
inputs(time))
I/ Logics language around symbolic surround signs across main intentional
secret {(clear, not clear), (digit, event), (custom, consumer), (job scheduling,
frequency's fashion flow)}
modeling's dynamics mechanism:
First of all, the assume to define the main real operating computing
architectural design around any element inside the envisage symbolicsynchronized set of {(clear, not), (digit, event), (custom, consumer), (job
scheduling, frequency's fashion flow)}
modeling's dynamics mechanism.
1. (clear, not) : thus, something is clear, means that this corresponding thing
is belong to finished final computing. Though, the "not" is a logical language
to indicate the negation around the considering action "not clear" means that
the current edge flow is still in progress of processing. Hence, when the "not"
logics is used, the illustration overview is missing and then its huge hard to
predict the final system's output.
2. (digit, event) : thus, digit is a following of increment(initial value) to reach
the desirable last value, which should be 9. In most major case of following
job scheduling architectures:
#include
#include
#include
#include
#include
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#include
#include
using namespace std
typedef vector array
typedef map hash_table
int main(int argc, char* argv[])
{
while( argc > 1)
do {
switch(argv)
{
case "clear": do {
...........
break; }
case "not": do {
...........
break; }
case "digit": do {
...........
break; }
case "event": do {
...........
break; }
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case "what if": do {
...........
break; }
case "frequency fashion": do {
...........
break; }
.....
}
.....
}
return 0
}
3. event : hence, the definition of event assume that the event is an
occurrence within the variation level of corresponding signal. Thus, the (up,
down) scaling stair's dynamics is the major most significant architectural
design around the discrete event simulation across the logical language of
inside computing to determine the function forms of mathematical inspirationsuch that for any considering system: system's output = function f( system's
input)
should then define and depict the real main operating behavior around the
mathematical inspiration that maintains the real operating of virtual (signal,
system) dynamics mechanism around the logical language of insert a signal
for any system to react and mount a mathematical inspiration's modeling
architectural design around the old theory of robust control in the function
forms of following current edge flow :
system's output = function f(system's input)
4. custom: traditional and widely accepted way of behaving or doing
something that is specific to a particular society, place, or time: the old
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English custom of dancing round the maypole [mass noun]:
custom demanded that a person should have gifts for the child [in singular] a
thing that one does habitually:
it is our custom to visit the Lake District in October
Law established usage having the force of law or right [mass noun] British
regular dealings with a shop or business by customers: if you keep me
waiting, I will take my custom elsewhere adjective [attributive] North
American made or done to order; custom-made:
a custom guitar Origin: Middle English: from Old French coustume, based on
Latin consuetudo, from consuetus, past participle of consuescere 'accustom',
from con- (expressing intensive force) + suescere 'become accustomed'
Hence, the custom allow the processing inside the dynamics mechanism
around the (system's input, system's output), this "logical language" across
the economy and financial approaches allow to define the custom as the
function f (system's input) = system's output.
4. consumer: a person who purchases goods and services for personal use:
[as modifier]: consumer demand a person or thing that eats or uses
something: Scandinavians are the largest consumers of rye.
Hence, consumer could be then used within the logics around the robust
control to engender the dynamics mechanism around the following node
operation. Thus, a consumer within the involving approach depict any node
operation, which has to receive the corresponding mathematical operation
around system's output = function f(system's input).
Even though, the custom is corresponding to the current edge flows, which
describe the function forms in mathematical final values of corresponding
node's outputs and transmission's transportation valuable variable extensible
available parameters to flow inside any graphical modeling's architectural
design.
5. inserting inspiration of what if: for any fatal focus on dynamic design
around the job scheduling, the main real aspect effects of the "inserting
inspiration of what if" when this so, consist the main real operating thread
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task in any parallel and serial instruction statement design architectures [ 1 ].
Even though, the inserting inspiration of what if could then involve the
while(constrain condition) do { serial parallel statement design and
instruction} or the switch(value) case "sub-value index" do {serial parallel
statement and instruction processing}, where the index is corresponding to 0,
1, 2, ....n and the break instruction to stop any following statement ofinstruction's level.
II/ sqr[sin(2.pi.f.n.ST)] secret across mathematical intentional surround
symbolic synchronized measurable sign:
In fact, the main major real operating dynamic design across the measurable
core processing is to follow by the assignment of finite amount quantity
inside a finite range of [a, b], where a is the lowest boundary limit and the b
is the highest boundary limit.
Even though, the frequency's definition is the major most huge hard
hierarchy home of interest inside many disciplines such as economy, financial
approaches and robust control, the
sin(2.pi.f.t + phi) mathematical inspiration's amount quantity should thendepict the rotation motion's description to flow within the old definition of
frequency as the x float multiply by either one tour or by 2.pi radiant to
describe that the associate frequency then defined to be equal to the ratio of
1 to (x*2.pi). Hence, for built in basic motion of rotation combined
mechanically within architectural design, the required sensor for any fixing
length's value has to involve the measurable amount quantity inside the
meter or feet units to be returned to the digital computing design to resolve
the needed association of the following description surrounding:
system's output = function f(system's input)
By, this way the old theory around the binary built in basic of frequency
involvement inside the measurable core inside the finite amount quantity [a,
b] for any x such that
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0 < a
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Otherwise the something not clear = rest of environment reality outside the
defined above surface's range.
Hence, this definition is a basic definition around the old logical language of
the main real operating thread tasks around the fuzzy logics, the new
associate approaches, consist to assign the computing around the ratio
notion inside the (clear, not) dynamics architectural design as follows:
something clear = +-tangent(v), where v is either inside [2.k.pi,
5.k.pi/2[ or ]5.k.pi/2, (2.k +1).pi] ranges.
Therefore, the
something not clear = 1 - something clear.
something not clear = sub(1 , something clear).
something not clear = sub(1, tangent(v)), where v is either inside [2.k.pi,
5.k.pi/2[ or ]5.k.pi/2, (2.k +1).pi] ranges.
even though, the main real operating dynamic architectural design around
the mathematical modeling design requires to involve the built in bunt
burrowing basics of ratio of c to d, the safe approval proposal surrounding
symbolic synchronized dynamics is to assign the follow
something not clear = ratio of 1 to (something clear)
something not clear = ratio of 1 to [tangent(v)], where v is either inside
[2.k.pi, 5.k.pi/2[ or ]5.k.pi/2, (2.k +1).pi] ranges.
something not clear = 1/[tangent(v)], where v is either inside [2.k.pi, 5.k.pi/2[
or ]5.k.pi/2, (2.k +1).pi] ranges.
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Hence, the involving main real operating question is to know, which amount
quantity should then be used within the computing around the "something
not clear" logical language assignment.
Furthermore, the most important dynamic architectural design around the
event is to flow,by increment(index), where the index should be started by
nil. Thus, increment(index) return to say that the processing of "loop"
statement inside the dynamics architectural design corresponding to job
scheduling is then achieved.
What does the "loop" statement inside the job scheduling mean for any event
inside the possible probable event environment flows?
Hence, an event is an occurrence, for any hardware description language, the
main real operating thread task is to flow within the signals as inputs effect
and change the behavior of systems during the simulation timing event
environment flow. Thus, the hardware description languages process within
signal an approval proposal system (system on chip or sub micro design or
other, see Cadence reference for more detailed information about circuit
inside magnetic electronics architectural design, whereby the major most
significant dynamics is to search the best built in binary (0 or 1) motor
current edge flow of any logics across the aim object for associate work load).
VI/ Simulation results around something not clear = ratio of 1 to [-
+tangent(v)], where v is either inside [2.k.pi, 5.k.pi/2[ or ]5.k.pi/2, (2.k +1).pi]
ranges:
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Figure 3 :
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V/ Conclusion:
IV/ Reference:
1.