To calculate the amperage for a 10kW heater on a 3-phase 220V system, use the formula: Amps = (kW x 1000) / (√3 x Volts). So, Amps = (10 x 1000) / (√3 x 220) = 26.18 amps per phase. Therefore, the total current drawn by the heater is 26.18 amps per phase multiplied by 3, which equals approximately 78.54 amps.
A 10kW heater at 220V would draw approximately 45.45 amps. This can be calculated using the formula: Amps = Watts / Volts. So, 10,000 Watts / 220 Volts = 45.45 amps.
10 kW is equal to 10,000 watts.
A 10kW heating element operating at 240V will have a BTU/h output of approximately 34,120 BTU/h. This calculation is based on the conversion factor of 1 kW = 3412 BTU/h.
Pwer is volts times amperes. 120 volts times 10 amperes = 1.2 KW
To calculate the phase current of a 10kW 3-phase motor, you can divide the total power (10kW) by the square root of 3 (approx. 1.732) and then divide that result by the line-to-line voltage. The formula is: Phase Current (Amps) = Power (W) / (√3 x Line-to-Line Voltage (V)).
To answer this question the voltage of the unit must be given.
A 10kW heater at 220V would draw approximately 45.45 amps. This can be calculated using the formula: Amps = Watts / Volts. So, 10,000 Watts / 220 Volts = 45.45 amps.
10 kW is equal to 10,000 watts.
yes
The formula you are looking for is I = W/E. Amps = Watts/Volts. As you can see a voltage must be stated to answer this question. 10kW = 10000 watts.
The company Briggs and Stratton offer a range of different generators, including a 10kw generator. Their website will allow you to browse and purchase the generator that you need.
10kw generators are available for purchase at Home Depot. They sell the Briggs & Stratton models which are known to be durable and dependable. These generators can get you through the worst of power outages.
A new 10kw generator can be purchased at AC Tool Supply, Northern Tool, Home Depot or Wise Equipment. Home Depot seems to be cheaper and most area have a store local.
10kw
Since watts = volts times amps times 1.73 times power factor (for a three phase motor): W = E * I * 1.73 * PF Solving for I: I = W / (E * 1.73 * PF) Lets say your motor has a PF of 0.85: I = 10000 / (415 * 1.73 * 0.85) I = 16.39A If this is for your homework (I hope not) and PF is not given, then you will substitute 1.0 for the PF and, of course, arrive at a different answer!
A 10kW heating element operating at 240V will have a BTU/h output of approximately 34,120 BTU/h. This calculation is based on the conversion factor of 1 kW = 3412 BTU/h.
Pwer is volts times amperes. 120 volts times 10 amperes = 1.2 KW