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How many amps do you lose in 40 feet? - Answers

The amount of current (amps) lost over a distance of 40 feet depends on several factors, including the wire gauge, the type of load, and the voltage. Voltage drop calculations can determine the loss in amps, but typically, the resistance of the wire will cause some loss. For precise calculations, you'll need to use the wire's resistance per foot and the current being drawn. Generally, longer distances and smaller wire gauges lead to greater losses.



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How many amps do you lose in 40 feet? - Answers

https://math.answers.com/math-and-arithmetic/How_many_amps_do_you_lose_in_40_feet

The amount of current (amps) lost over a distance of 40 feet depends on several factors, including the wire gauge, the type of load, and the voltage. Voltage drop calculations can determine the loss in amps, but typically, the resistance of the wire will cause some loss. For precise calculations, you'll need to use the wire's resistance per foot and the current being drawn. Generally, longer distances and smaller wire gauges lead to greater losses.



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https://math.answers.com/math-and-arithmetic/How_many_amps_do_you_lose_in_40_feet

How many amps do you lose in 40 feet? - Answers

The amount of current (amps) lost over a distance of 40 feet depends on several factors, including the wire gauge, the type of load, and the voltage. Voltage drop calculations can determine the loss in amps, but typically, the resistance of the wire will cause some loss. For precise calculations, you'll need to use the wire's resistance per foot and the current being drawn. Generally, longer distances and smaller wire gauges lead to greater losses.

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      The amount of current (amps) lost over a distance of 40 feet depends on several factors, including the wire gauge, the type of load, and the voltage. Voltage drop calculations can determine the loss in amps, but typically, the resistance of the wire will cause some loss. For precise calculations, you'll need to use the wire's resistance per foot and the current being drawn. Generally, longer distances and smaller wire gauges lead to greater losses.
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