Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration Solution

STEP 0: Pre-Calculation Summary
Formula Used
Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B
TB = IB*αB
This formula uses 3 Variables
Variables Used
Torque Required on Shaft B to Accelerate Itself - (Measured in Newton Meter) - Torque Required on Shaft B to Accelerate Itself is the rotational force required to change the rotational motion of Shaft B in a kinetic system.
Mass Moment of Inertia of Mass Attached to Shaft B - (Measured in Kilogram Square Meter) - Mass Moment of Inertia of Mass Attached to Shaft B is a measure of an object's resistance to changes in its rotational motion around a specific axis.
Angular Acceleration of Shaft B - Angular Acceleration of Shaft B is the rate of change of angular velocity of Shaft B, describing its rotational motion around a fixed axis.
STEP 1: Convert Input(s) to Base Unit
Mass Moment of Inertia of Mass Attached to Shaft B: 36 Kilogram Square Meter --> 36 Kilogram Square Meter No Conversion Required
Angular Acceleration of Shaft B: 75 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
TB = IBB --> 36*75
Evaluating ... ...
TB = 2700
STEP 3: Convert Result to Output's Unit
2700 Newton Meter --> No Conversion Required
FINAL ANSWER
2700 Newton Meter <-- Torque Required on Shaft B to Accelerate Itself
(Calculation completed in 00.004 seconds)

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Torque on Shaft Calculators

Total Torque Applied to Shaft A to Accelerate Geared System
​ LaTeX ​ Go Total Torque = (Mass Moment of Inertia of Mass Attached to Shaft A+Gear Ratio^2*Mass Moment of Inertia of Mass Attached to Shaft B)*Angular Acceleration of Shaft A
Torque on Shaft B to Accelerate Itself given Gear Ratio
​ LaTeX ​ Go Torque Required on Shaft B to Accelerate Itself = Gear Ratio*Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft A
Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration
​ LaTeX ​ Go Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B
Total Torque Applied to Accelerate Geared System given Ta and Tab
​ LaTeX ​ Go Total Torque = Torque Required on Shaft A to Accelerate Itself+Torque Applied on Shaft A to Accelerate Shaft B

Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration Formula

​LaTeX ​Go
Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B
TB = IB*αB

Does more Torque mean faster Acceleration?

Basically, the faster the crankshaft spins with the same amount of force, the more power an engine will make. A car with more horse power than torque will always be quicker since this gives a car acceleration and speed. Higher torque doesn't mean one vehicle will necessarily be faster than another, though.

How to Calculate Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration?

Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration calculator uses Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B to calculate the Torque Required on Shaft B to Accelerate Itself, Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration formula is defined as the rotational force that causes the shaft to rotate, resulting in angular acceleration, and is a critical parameter in the design and analysis of mechanical systems, particularly in the context of kinetics of motion. Torque Required on Shaft B to Accelerate Itself is denoted by TB symbol.

How to calculate Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration using this online calculator? To use this online calculator for Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration, enter Mass Moment of Inertia of Mass Attached to Shaft B (IB) & Angular Acceleration of Shaft B B) and hit the calculate button. Here is how the Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration calculation can be explained with given input values -> 2700 = 36*75.

FAQ

What is Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration?
Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration formula is defined as the rotational force that causes the shaft to rotate, resulting in angular acceleration, and is a critical parameter in the design and analysis of mechanical systems, particularly in the context of kinetics of motion and is represented as TB = IBB or Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B. Mass Moment of Inertia of Mass Attached to Shaft B is a measure of an object's resistance to changes in its rotational motion around a specific axis & Angular Acceleration of Shaft B is the rate of change of angular velocity of Shaft B, describing its rotational motion around a fixed axis.
How to calculate Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration?
Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration formula is defined as the rotational force that causes the shaft to rotate, resulting in angular acceleration, and is a critical parameter in the design and analysis of mechanical systems, particularly in the context of kinetics of motion is calculated using Torque Required on Shaft B to Accelerate Itself = Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft B. To calculate Torque on Shaft B to Accelerate Itself given M.I and Angular Acceleration, you need Mass Moment of Inertia of Mass Attached to Shaft B (IB) & Angular Acceleration of Shaft B B). With our tool, you need to enter the respective value for Mass Moment of Inertia of Mass Attached to Shaft B & Angular Acceleration of Shaft B 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 Torque Required on Shaft B to Accelerate Itself?
In this formula, Torque Required on Shaft B to Accelerate Itself uses Mass Moment of Inertia of Mass Attached to Shaft B & Angular Acceleration of Shaft B. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Torque Required on Shaft B to Accelerate Itself = Gear Ratio*Mass Moment of Inertia of Mass Attached to Shaft B*Angular Acceleration of Shaft A
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