particle mass
As the sources put it
Furthermore, electrical charged ions or particles can move toward stationary voltage fields or voltage zones (66/67) of opposite polarity, and, is given by Newton's second law (Eq 12) Where, the acceleration (A) of a particle mass (M) acted on by a net force (F).
Where it appears · 7
Documents 7
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Voltage Dynamics
2× · introduced
…trical circuit (60) having unlike electrical charges are attracted to each other. Ions or particle mass having the same or like electrical charges will move away from one another, as illustrated in (220) of Figure…
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Atomic Energy Equilibrium
1× · introduced
Force Factor (548) (Particle Mass) ~ moving through a Electrostatic Field (544) having a Negative Electrical Charge (546) and exhibiting a Electromagnetic Field (547) opposing Orbital Velocity (549) of moving elec…
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Voltage Performs Work
1× · introduced
…e polarity, and, is given by Newton's second Law (Eq 12) Where The acceleration (A) of an particle mass (M) acted on by a Net Force (F). Whereby Net Force (F) is the "electrical attraction force" between opposite…
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Voltage Performs Work
1× · introduced
…pposite polarity, and, is given by Newton's second law Where The acceleration (A⃗) of an particle mass (M) acted on by a Net Force (F⃗). Whereby Net Force (F⃗) is the “electrical attraction force” between opposit…
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State of Unbalance
1×
…opposite electrical charged mass entities) since each individual and separate sub-atomic particle mass entity exhibits one of the two opposite electrical charged fields (B+) or (B-).…
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Wobbling Effect
1×
…able atom (s) that has become radioactive since each atom has the same electrical charged particle mass entities, just different in atomic numbers. Remember, all substances are composed of atom structures grouped…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
1×
…polarity, and, is given by Newton's second law: A = F / M Where the acceleration (A) or a particle mass (M) acted on by a net force (F). Net force (F) is the "electron attraction force" between opposite electrical…