Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute Solution

STEP 0: Pre-Calculation Summary
Formula Used
Brake Power = Work done per minute/60
BP = w/60
This formula uses 2 Variables
Variables Used
Brake Power - (Measured in Watt) - Brake Power is the power available at the crankshaft.
Work done per minute - (Measured in Joule) - Work done per minute is the that force acts upon an object while it is moving.
STEP 1: Convert Input(s) to Base Unit
Work done per minute: 12 Joule --> 12 Joule No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
BP = w/60 --> 12/60
Evaluating ... ...
BP = 0.2
STEP 3: Convert Result to Output's Unit
0.2 Watt --> No Conversion Required
FINAL ANSWER
0.2 Watt <-- Brake Power
(Calculation completed in 00.005 seconds)

Credits

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6 Brake Power Calculators

Brake Power of Engine for Rope Brake Dynamometer
Go Brake Power = ((Dead Load-Spring Balance Reading)*pi*(Diameter of Wheel+Diameter of Rope)*Speed of Shaft in RPM)/60
Brake Power of Engine for Belt Transmission Dynamometer
Go Brake Power = ((Tension in Tight Side of Belt-Tension in Slack Side of Belt)*pi*Diameter of the driving pulley*Speed of Shaft in RPM)/60
Brake Power of Engine for Rope Brake Dynamometer if Diameter of Rope is Neglected
Go Brake Power = ((Dead Load-Spring Balance Reading)*pi*Diameter of Wheel*Speed of Shaft in RPM)/60
Brake Power of Engine for Prony Brake Dynamometer
Go Brake Power = (Weight at Outer End of Lever*Distance between Weight and Center of Pulley*2*pi*Speed of Shaft in RPM)/60
Brake Power of Engine for Prony Brake Dynamometer given Speed of Shaft
Go Brake Power = (Total Torque*2*pi*Speed of Shaft in RPM)/60
Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute
Go Brake Power = Work done per minute/60

Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute Formula

Brake Power = Work done per minute/60
BP = w/60

What is prony brake dynamometer?

A dynamometer is a device used for measuring the power transmitted by a rotating shaft. The Prony Brake is an early dynamometer developed by Prony in the early 1800s. It is composed of brake blocks that press against the rotating wheel attached to the motor.

How to Calculate Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute?

Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute calculator uses Brake Power = Work done per minute/60 to calculate the Brake Power, The Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute formula is defined as the power available at the crankshaft. Brake Power is denoted by BP symbol.

How to calculate Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute using this online calculator? To use this online calculator for Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute, enter Work done per minute (w) and hit the calculate button. Here is how the Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute calculation can be explained with given input values -> 0.2 = 12/60.

FAQ

What is Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute?
The Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute formula is defined as the power available at the crankshaft and is represented as BP = w/60 or Brake Power = Work done per minute/60. Work done per minute is the that force acts upon an object while it is moving.
How to calculate Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute?
The Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute formula is defined as the power available at the crankshaft is calculated using Brake Power = Work done per minute/60. To calculate Brake Power of Engine for Prony Brake Dynamometer given Work Done per Minute, you need Work done per minute (w). With our tool, you need to enter the respective value for Work done per minute and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Brake Power?
In this formula, Brake Power uses Work done per minute. We can use 5 other way(s) to calculate the same, which is/are as follows -
  • Brake Power = ((Tension in Tight Side of Belt-Tension in Slack Side of Belt)*pi*Diameter of the driving pulley*Speed of Shaft in RPM)/60
  • Brake Power = (Weight at Outer End of Lever*Distance between Weight and Center of Pulley*2*pi*Speed of Shaft in RPM)/60
  • Brake Power = (Total Torque*2*pi*Speed of Shaft in RPM)/60
  • Brake Power = ((Dead Load-Spring Balance Reading)*pi*(Diameter of Wheel+Diameter of Rope)*Speed of Shaft in RPM)/60
  • Brake Power = ((Dead Load-Spring Balance Reading)*pi*Diameter of Wheel*Speed of Shaft in RPM)/60
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