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By combining data from the two steps an equation linking mechanical power (dependent on mass) to electrical power (calculated by multiplying voltage by current) can be derived.
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Furthermore, its reference current is generated in multiplying the voltage loop controller output by the grid voltage waveform, and therefore non-active components analysis for harmonics elimination and reactive power compensation in the conventional design is not necessary.
Power consumption is calculated by multiplying the voltage and current consumption at any given moment (i.e. when each measurement is taken).
You can find out what wattage your appliances produce by multiplying their voltage times their amperage.
The electron multiplier voltage offset was set to 50 V from 3.00 to 6.00 min. Full calibration quantification of propofol was carried out by comparison of its peak area in the sample with that of calibration curves, in which the peak areas of spiked calibrators had been plotted against their concentrations (0.1, 0.5, 1.0, 2.5.0,.0, 7.5, 10.0 mg/L).
The secondary voltage is calculated by multiplying the primary voltage by the ratio of the number of turns in the secondary coil to the number of turns in the primary coil, a quantity called the turns ratio.
The remainder of the line to the right, as in the characteristic impedance calculation, is replaced with \scriptstyle Z_0, :\frac {V_\mathrm i}{V_{x1}} = \frac{\delta Z+\frac{Z_0 /\delta Y}{Z_0+1/\delta Y}}{\frac{Z_0 /\delta Y}{Z_0+1/\delta Y}} = 1 + \frac {\delta Z}{Z_0} + \delta Z \delta Y Each infinitesimal section will multiply the voltage drop by the same factor.
The power can be measured by graphically multiplying the terminal voltage and current waveforms from an oscilloscope and normalizing the energy product to 1 s (power = energy/second) or by measuring the voltage and current directly using a digital voltmeter, if it is a DC application.
Voltseconds is the applied voltage multiplied by the time that it is applied for.
In addition, by using LCR resonant circuits, it is possible to not only (3) increase the transmission efficiency but also (4) multiply the driving voltage of the capacitive MEMS actuator, because of LC resonance.
Energy consumption the trains are supplied with direct current, and so the instantaneous power drawn is simply calculated by multiplying the measured current and voltage.
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