Acceleration Angle Area Computer Concentration
Density Distance Energy Flow Force
Light Mass OHM's law calculations Power Pressure
Speed Temperature Time Torque Volume
Volume - dry
Energy
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Input:
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Flow
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Force
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Light
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Input:
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Mass
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Power
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Input:
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Pressure
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Input:
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Acceleration
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Input:
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Angle
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Input:
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Area
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Computer
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Concentration
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Density
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Distance
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Speed
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Temperature
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Time
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Torque
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Volume
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Volume - dry
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OHM's Law Calculations
Intensity of Current (I) in Apmeres
I = P / E
Power (Watts)Electromotive Force (Volts) Current (Amps)
I = √(P / R)
Power (Watts)Resistance (Ohms) Current (Amps) 
I = E / R
Electromotive Force (Volts)Resistance (Ohms) Current (Amps) 


Electromotive Force (E) in Volts
E = I x R
Current (Amps)Resistance (Ohms) Electromotive Force (Volts) 
E = P / I
Power (Watts)Current (Amps) Electromotive Force (Volts) 
E = √(P x R)
Power (Watts)Resistance (Ohms) Electromotive Force (Volts) 


Resistance (R) in Ohms
R = P / I 2
Power (Watts)Current (Amps) Resistance (Ohms) 
R = E / I
Electromotive Force (Volts)Current (Amps) Resistance (Ohms) 
R = E 2 / P
Electromotive Force (Volts)Power (Watts) Resistance (Ohms) 


Power (P) in Watts
P = I 2 x R
Current (Amps)Resistance (Ohms) Power (Watts) 
P = E x I
Electromotive Force (Volts)Current (Amps) Power (Watts) 
P = E 2 / R
Electromotive Force (Volts)Resistance (Ohms) Power (Watts)