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Science Forum Index » Physics Forum » Quanutm Gravity as Charge Analogy is OK
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| Author |
Message |
| Douglas Eagleson |
Posted: Tue Apr 29, 2008 3:09 am |
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Guest
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A basic test question is the ammount of matter. A gram as mass
exhibits a gravity force and as a force all effect then becomess a
masses. Analogy to charge is allowed in quantum gravity.
A cause to like and dislike as effect was to be examined and all
matter as grams appear to attract. Causing always dislike effect. A
reason for confusion was always a term indicating that arbitary sign
as a cause was inconsistent with analogy to charge.
A dilemma until all charge as effect was a simple foundational
relation. A force direection was apparent between a piece of matter
split into two pieces. A splitting causes all effect. And matter as a
bunch of atoms appear not different from an atom itslef when cause to
force direction was allowed to be relative to force itself. A quanta
as a graviton quite all right allows matter charge. A dislaike force
effect as a charge for gravity relative to electronic charge is NOT
found to exist, causing the need to predict the direction of force.
So cause as direct appear the issue. What causes directionality of
force?
A real answer was the simple mass. A size as cause to direction
allows all force to equate. A literall size as cm would cause. A
small matter has electronic charge while large matter has both
electronic and gravitational effecting significantly.
A size as cause.
A wavelength as a graviton size appears to cause the necessary charge
direction. Avoiding dilemma. Direction as a force effect was to
always be idenified as relating a.. blah blah.
So some people can use charge analogy perfectly, in quantum gravity.
A solution was to understand the large distance effect of graivty as
opposed to electrons. A force range as a real distinction was to
allow all matter momenta change to occur relative to size of matter
acreation.
Wavelength of gravitons allows all acreation. A term used to describe
the effect of quanta in general. A cause to matter. A disassociative
effect as like charges becomes a matter of finding out the effect for
the stated cause. A size of material as associative force.
In implication was the likely NON existence of dislike force in
gravity. MAybe it exists, but it is locked in the larger cosmology.
SO anti-gravity appears a vain solution attempt.
As quanta get larger in wavelength a size factor may be defined to
make classes of force quanta. A graviton is another class distinction
from electronic forces.
Electronic versus matter.
All is well in analogy to charge. |
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| Brit |
Posted: Tue Apr 29, 2008 6:03 am |
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Guest
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On Apr 29, 2:09 pm, Douglas Eagleson <eaglesondoug...@yahoo.com>
wrote:
Quote: A basic test question is the ammount of matter. A gram as mass
exhibits a gravity force and as a force all effect then becomess a
masses. Analogy to charge is allowed in quantum gravity.
A cause to like and dislike as effect was to be examined and all
matter as grams appear to attract. Causing always dislike effect. A
reason for confusion was always a term indicating that arbitary sign
as a cause was inconsistent with analogy to charge.
A dilemma until all charge as effect was a simple foundational
relation. A force direection was apparent between a piece of matter
split into two pieces. A splitting causes all effect. And matter as a
bunch of atoms appear not different from an atom itslef when cause to
force direction was allowed to be relative to force itself. A quanta
as a graviton quite all right allows matter charge. A dislaike force
effect as a charge for gravity relative to electronic charge is NOT
found to exist, causing the need to predict the direction of force.
So cause as direct appear the issue. What causes directionality of
force?
A real answer was the simple mass. A size as cause to direction
allows all force to equate. A literall size as cm would cause. A
small matter has electronic charge while large matter has both
electronic and gravitational effecting significantly.
A size as cause.
A wavelength as a graviton size appears to cause the necessary charge
direction. Avoiding dilemma. Direction as a force effect was to
always be idenified as relating a.. blah blah.
So some people can use charge analogy perfectly, in quantum gravity.
A solution was to understand the large distance effect of graivty as
opposed to electrons. A force range as a real distinction was to
allow all matter momenta change to occur relative to size of matter
acreation.
Wavelength of gravitons allows all acreation. A term used to describe
the effect of quanta in general. A cause to matter. A disassociative
effect as like charges becomes a matter of finding out the effect for
the stated cause. A size of material as associative force.
In implication was the likely NON existence of dislike force in
gravity. MAybe it exists, but it is locked in the larger cosmology.
SO anti-gravity appears a vain solution attempt.
As quanta get larger in wavelength a size factor may be defined to
make classes of force quanta. A graviton is another class distinction
from electronic forces.
Electronic versus matter.
All is well in analogy to charge.
What on Earth are you on about? |
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| Douglas Eagleson |
Posted: Tue Apr 29, 2008 6:43 am |
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Guest
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On Apr 29, 9:03 am, Brit <p...@wild-grant.net> wrote:
Quote: On Apr 29, 2:09 pm, Douglas Eagleson <eaglesondoug...@yahoo.com
wrote:
A basic test question is the ammount of matter. A gram as mass
exhibits a gravity force and as a force all effect then becomess a
masses. Analogy to charge is allowed in quantum gravity.
A cause to like and dislike as effect was to be examined and all
matter as grams appear to attract. Causing always dislike effect. A
reason for confusion was always a term indicating that arbitary sign
as a cause was inconsistent with analogy to charge.
A dilemma until all charge as effect was a simple foundational
relation. A force direection was apparent between a piece of matter
split into two pieces. A splitting causes all effect. And matter as a
bunch of atoms appear not different from an atom itslef when cause to
force direction was allowed to be relative to force itself. A quanta
as a graviton quite all right allows matter charge. A dislaike force
effect as a charge for gravity relative to electronic charge is NOT
found to exist, causing the need to predict the direction of force.
So cause as direct appear the issue. What causes directionality of
force?
A real answer was the simple mass. A size as cause to direction
allows all force to equate. A literall size as cm would cause. A
small matter has electronic charge while large matter has both
electronic and gravitational effecting significantly.
A size as cause.
A wavelength as a graviton size appears to cause the necessary charge
direction. Avoiding dilemma. Direction as a force effect was to
always be idenified as relating a.. blah blah.
So some people can use charge analogy perfectly, in quantum gravity.
A solution was to understand the large distance effect of graivty as
opposed to electrons. A force range as a real distinction was to
allow all matter momenta change to occur relative to size of matter
acreation.
Wavelength of gravitons allows all acreation. A term used to describe
the effect of quanta in general. A cause to matter. A disassociative
effect as like charges becomes a matter of finding out the effect for
the stated cause. A size of material as associative force.
In implication was the likely NON existence of dislike force in
gravity. MAybe it exists, but it is locked in the larger cosmology.
SO anti-gravity appears a vain solution attempt.
As quanta get larger in wavelength a size factor may be defined to
make classes of force quanta. A graviton is another class distinction
from electronic forces.
Electronic versus matter.
All is well in analogy to charge.
What on Earth are you on about?- Hide quoted text -
- Show quoted text -
I like to make relations as theory. Analogy to charge without any
gravitational attraction is ok was my point. An appearance of failure
because of the non existance of attractive gravity is only a false
failure appearance.
I envision a world of true gravitons as only seeable as gravity
effect. Gravitons a force quanta of a class distinct from photons, an
electron force class. |
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