Angular Speed of Series DC Generator given Torque Solution

STEP 0: Pre-Calculation Summary
Formula Used
Angular Speed = Input Power/Torque
ωs = Pin/τ
This formula uses 3 Variables
Variables Used
Angular Speed - (Measured in Radian per Second) - Angular speed is the rate of rotation about an axis, measuring how the angle changes with time. It is measured in radian/sec.
Input Power - (Measured in Watt) - Input Power is defined as the total power supplied to the dc electrical machine from the source which is connected to it.
Torque - (Measured in Newton Meter) - Torque is the measure of the turning force produced by the armature. It is produced by the interaction between the magnetic field of the stator and the current flowing through armature.
STEP 1: Convert Input(s) to Base Unit
Input Power: 180 Watt --> 180 Watt No Conversion Required
Torque: 1.57 Newton Meter --> 1.57 Newton Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ωs = Pin/τ --> 180/1.57
Evaluating ... ...
ωs = 114.649681528662
STEP 3: Convert Result to Output's Unit
114.649681528662 Radian per Second --> No Conversion Required
FINAL ANSWER
114.649681528662 114.6497 Radian per Second <-- Angular Speed
(Calculation completed in 00.004 seconds)

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Vishwakarma Government Engineering College (VGEC), Ahmedabad
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3 Mechanical Specifications Calculators

Torque of Series DC Generator given Angular Speed and Armature Current
Go Torque = (Armature Voltage*Armature Current)/Angular Speed
Resultant Pitch of DC Series Generator
Go Resultant Pitch = Back Pitch+Front Pitch
Angular Speed of Series DC Generator given Torque
Go Angular Speed = Input Power/Torque

Angular Speed of Series DC Generator given Torque Formula

Angular Speed = Input Power/Torque
ωs = Pin/τ

What is the speed of a Series DC Generator?

The speed of a series DC generator is typically determined by the mechanical power input provided to the generator. The speed can vary depending on the application, but it is generally in the range of a few hundred to a few thousand revolutions per minute (RPM). The specific speed will depend on the design of the generator and the requirements of the application.

How to Calculate Angular Speed of Series DC Generator given Torque?

Angular Speed of Series DC Generator given Torque calculator uses Angular Speed = Input Power/Torque to calculate the Angular Speed, The Angular Speed of Series DC Generator given Torque formula is defined as the angular speed of the Series DC Generator when input power is given. Angular Speed is denoted by ωs symbol.

How to calculate Angular Speed of Series DC Generator given Torque using this online calculator? To use this online calculator for Angular Speed of Series DC Generator given Torque, enter Input Power (Pin) & Torque (τ) and hit the calculate button. Here is how the Angular Speed of Series DC Generator given Torque calculation can be explained with given input values -> 114.6497 = 180/1.57.

FAQ

What is Angular Speed of Series DC Generator given Torque?
The Angular Speed of Series DC Generator given Torque formula is defined as the angular speed of the Series DC Generator when input power is given and is represented as ωs = Pin or Angular Speed = Input Power/Torque. Input Power is defined as the total power supplied to the dc electrical machine from the source which is connected to it & Torque is the measure of the turning force produced by the armature. It is produced by the interaction between the magnetic field of the stator and the current flowing through armature.
How to calculate Angular Speed of Series DC Generator given Torque?
The Angular Speed of Series DC Generator given Torque formula is defined as the angular speed of the Series DC Generator when input power is given is calculated using Angular Speed = Input Power/Torque. To calculate Angular Speed of Series DC Generator given Torque, you need Input Power (Pin) & Torque (τ). With our tool, you need to enter the respective value for Input Power & Torque and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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