Figure (11-5)
Figure (11-5)
How it is written
- (11-5) 4×
Drawings 1
-
"Voltage Energized Thermal Transference Effect" (1050) of Figure (11-5) · Voltage Flexing Process
On this figure 8
- 210 Water Molecule
- 951 Physical Flexing
- 952 Stationary Voltage Fields
- 954 Physical Stress
- 956 Voltage Fields
- 1050 Voltage Energized Thermal Transference Effect
- E15 Electrical Voltage Fields
- E16 Electrical Voltage Fields
Where it is named · 4
Voltage Flexing Process 4×
-
… lecule to release thermal energy (Kinetic Energy) from the water molecule atom (s) without the need of gas combustion brought about by gas separation from water, as so illustrated in (1050) of Figure (11-5).
-
... whichever the case may be, the applied stationary voltage fields (952/E13 – 953/E14) or (954/E15 – 956/E16) alternately switch over periodically superimposes electrical stress forces (S-S' and R - R') onto the energy spectrum of the water molecule atom (s )(210) while physical flexing (951) of Figure (11-5) of the water molecule atom (s) occurs
-
Repetitive formation of pulse voltage fields (952a xxx 952n) - 953a xxx 953n) or (954a xxx 954n- 956a xxx 956n) continues this "Voltage Energized Thermal Transference Effect" (1050) of Figure (11-5) (hereinafter called Atomic Flexing Process) during each and every pulse voltage on-time, as so illustrated by way of gated pulse-voltage waveform (1020) of Figure (11-2).
-
"Voltage Energized Thermal Transference Effect" (1050) of Figure (11-5)