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Voltage current resistance and electric power general ...

    http://www.sengpielaudio.com/calculator-ohm.htm
    The nominal impedance Z = 4, 8, and 16 ohms (loudspeakers) is often assumed as resistance R. Ohm's law equation (formula): V = I × R and the power law equation (formula): P = I × V. P = power, I or J = Latin: influare, international …

Reverse engineered resistor calculator resistor pairs ...

    http://www.sengpielaudio.com/calculator-parallel.htm
    Calculation: Resistor pairs - reverse engineered calculator • Search of R 1 and R 2 with known target resistance • Resistor calculation: The calculator searches the values for the resistor pairs R 1 and R 2 from the E24 range of preferred values, which build paralleled the …

Parallel Resistor Calculator R1 + R2 = equivalent resistor ...

    http://www.sengpielaudio.com/calculator-paralresist.htm
    This calculator determines the resistance of up to 10 resistors in parallel. Enter resistances into the boxes below and when all values have been input, click on the 'calculate' button and the result will appear in the box below that button. As a test, if we enter resistances of 4, 6, and 12 ohms, the answer should be 2 ohms.

Ohm's law calculation calculator calculate power …

    http://www.sengpielaudio.com/calculator-ohmslaw.htm
    the wire length L in feet (ft) times the wire resistance per 1000 feet R in ohms (Ω / kft) divided by 1000: Vdrop (V) = Iwire (A) × Rwire (Ω) = Iwire (A) × (2 × L (ft) × Rwire (Ω / kft) / 1000 (ft / kft)) The voltage drop V in volts (V) is equal to the …

Impedance matching impedance bridging interface ...

    http://www.sengpielaudio.com/calculator-bridging.htm
    The seldom specified source resistance Z 2 (Z out) is hidden in the damping factor D F. A damping factor of at least D F = 100 is entirely in order. Analog studio devices have a source impedance Z 2 of less than 40 ohms, with a load impedance of Z 1 greater than 10 kiloohms.

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