What is the voltage drop for a 3-hp pump installed 220 feet from a 220-volt main service using 12 AWG solid wire?

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Multiple Choice

What is the voltage drop for a 3-hp pump installed 220 feet from a 220-volt main service using 12 AWG solid wire?

Explanation:
To determine the voltage drop for a 3-horsepower (hp) pump installed 220 feet from a 220-volt main service using 12 AWG solid wire, we need to consider a few important factors including the current drawn by the pump, the distance of the wire run, and the properties of the wire. First, let's calculate the current that a 3-hp pump draws. Electric power is measured in watts, and 1 hp is approximately equal to 746 watts. Therefore, a 3-hp pump would use about: 3 hp * 746 watts/hp = 2238 watts To find the current in amperes, we use the formula: Current (I) = Power (P) / Voltage (V) So substituting our values: I = 2238 watts / 220 volts ≈ 10.14 amps Next, we can calculate the voltage drop. The voltage drop (V_d) can be calculated using the formula: V_d = 2 * L * I * R Where: - L is the one-way length of the circuit (in feet), - I is the current in amperes, - R is the resistance per 1000 feet for the wire

To determine the voltage drop for a 3-horsepower (hp) pump installed 220 feet from a 220-volt main service using 12 AWG solid wire, we need to consider a few important factors including the current drawn by the pump, the distance of the wire run, and the properties of the wire.

First, let's calculate the current that a 3-hp pump draws. Electric power is measured in watts, and 1 hp is approximately equal to 746 watts. Therefore, a 3-hp pump would use about:

3 hp * 746 watts/hp = 2238 watts

To find the current in amperes, we use the formula:

Current (I) = Power (P) / Voltage (V)

So substituting our values:

I = 2238 watts / 220 volts ≈ 10.14 amps

Next, we can calculate the voltage drop. The voltage drop (V_d) can be calculated using the formula:

V_d = 2 * L * I * R

Where:

  • L is the one-way length of the circuit (in feet),

  • I is the current in amperes,

  • R is the resistance per 1000 feet for the wire

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