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newton's third law requires forces to occur in pairs of equal but antiparallel forces.
newton's third law requires forces to occur in pairs of equal but antiparallel forces.
Last Update: 2018-02-13
Usage Frequency: 1
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also forget the notion that the e-field is given by e = -Ñf. in foundations of physics, those equations are known to be incorrect for the vacuum. em force fields are known (in qm foundations theory) to be effects, existing only in and on the charged particles, and not existing separately at all,14 or in the vacuum at all.15 instead of e = -Ñf, in the vacuum the correct equation would be something like this: pe = -Ñf. in this case, we have correctly stated that the potential gradient pe provides the potential for producing an antiparallel e-field in and on a coupling/collecting charged mass, and the magnitude and direction of that potential gradient will be given by -Ñf, if and only if a charged mass particle is first introduced so that it couples to pe.
also forget the notion that the e-field is given by e = -Ñf. in foundations of physics, those equations are known to be incorrect for the vacuum. em force fields are known (in qm foundations theory) to be effects, existing only in and on the charged particles, and not existing separately at all,14 or in the vacuum at all.15 instead of e = -Ñf, in the vacuum the correct equation would be something like this: pe = -Ñf. in this case, we have correctly stated that the potential gradient pe provides the potential for producing an antiparallel e-field in and on a coupling/collecting charged mass, and the magnitude and direction of that potential gradient will be given by -Ñf, if and only if a charged mass particle is first introduced so that it couples to pe.
Last Update: 2018-02-13
Usage Frequency: 1
Quality: