Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only Solution

STEP 0: Pre-Calculation Summary
Formula Used
Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle)
a = (μbrake*g*x)/(L-μbrake*h)
This formula uses 6 Variables
Variables Used
Retardation of Vehicle - (Measured in Meter per Square Second) - Retardation of vehicle is the rate of decrease of velocity of a vehicle with respect to time, usually measured in meters per second squared.
Coefficient of Friction for Brake - Coefficient of Friction for Brake Retardation is a measure of the frictional force that opposes the motion of a vehicle, slowing it down during braking.
Acceleration due to Gravity - (Measured in Meter per Square Second) - Acceleration due to Gravity is the rate at which the velocity of an object decreases as it moves under the influence of gravity, slowing down the vehicle.
Perpendicular Distance of C.G - (Measured in Meter) - Perpendicular distance of C.G is the shortest distance from the centre of gravity of a vehicle to the point where it is pivoted during retardation.
Distance between Center of Rear and Front Wheels - (Measured in Meter) - Distance between Center of Rear and Front Wheels is the length between the center of the rear wheel and the center of the front wheel of a vehicle.
Height of C.G. of Vehicle - (Measured in Meter) - Height of C.G. of Vehicle is the vertical distance of the center of gravity from the ground level of a vehicle, affecting its stability and balance.
STEP 1: Convert Input(s) to Base Unit
Coefficient of Friction for Brake: 0.92 --> No Conversion Required
Acceleration due to Gravity: 9.8 Meter per Square Second --> 9.8 Meter per Square Second No Conversion Required
Perpendicular Distance of C.G: 0.2 Meter --> 0.2 Meter No Conversion Required
Distance between Center of Rear and Front Wheels: 360 Meter --> 360 Meter No Conversion Required
Height of C.G. of Vehicle: 0.4 Meter --> 0.4 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
a = (μbrake*g*x)/(L-μbrake*h) --> (0.92*9.8*0.2)/(360-0.92*0.4)
Evaluating ... ...
a = 0.00501401432575522
STEP 3: Convert Result to Output's Unit
0.00501401432575522 Meter per Square Second --> No Conversion Required
FINAL ANSWER
0.00501401432575522 0.005014 Meter per Square Second <-- Retardation of Vehicle
(Calculation completed in 00.020 seconds)

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National Institute Of Technology (NIT), Hamirpur
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Retardation of the Vehicle Calculators

Retardation of Vehicle if Vehicle Moves down Plane if Brakes are Applied to Rear Wheels only
​ LaTeX ​ Go Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*cos(Angle of Inclination of plane to Horizontal)*(Distance between Center of Rear and Front Wheels-Perpendicular Distance of C.G))/(Distance between Center of Rear and Front Wheels+Coefficient of Friction for Brake*Height of C.G. of Vehicle)-Acceleration due to Gravity*sin(Angle of Inclination of plane to Horizontal)
Retardation of Vehicle if Vehicle Moves down Plane if Brakes are Applied to Front Wheels only
​ LaTeX ​ Go Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*cos(Angle of Inclination of plane to Horizontal)*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle)-Acceleration due to Gravity*sin(Angle of Inclination)
Retardation of Vehicle if Vehicle Moves down Plane if Brakes are Applied to All Four Wheels
​ LaTeX ​ Go Retardation of Vehicle = Acceleration due to Gravity*(Coefficient of Friction for Brake*cos(Angle of Inclination of plane to Horizontal)-sin(Angle of Inclination of plane to Horizontal))
Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to All Four Wheels
​ LaTeX ​ Go Retardation of Vehicle = Acceleration due to Gravity*Coefficient of Friction for Brake

Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only Formula

​LaTeX ​Go
Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle)
a = (μbrake*g*x)/(L-μbrake*h)

What is Breaks?

Brakes are mechanical devices used to slow down or stop the motion of a vehicle or machine by applying friction. They work by converting the kinetic energy of the moving object into heat, ensuring safe control and stopping. Brakes are crucial for managing speed and ensuring safety during operation.

How to Calculate Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only?

Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only calculator uses Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle) to calculate the Retardation of Vehicle, Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only formula is defined as the deceleration of a vehicle when brakes are applied to the front wheels only, which is affected by the braking coefficient, gravity, and the distance between the center of gravity and the point of application of the braking force. Retardation of Vehicle is denoted by a symbol.

How to calculate Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only using this online calculator? To use this online calculator for Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only, enter Coefficient of Friction for Brake brake), Acceleration due to Gravity (g), Perpendicular Distance of C.G (x), Distance between Center of Rear and Front Wheels (L) & Height of C.G. of Vehicle (h) and hit the calculate button. Here is how the Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only calculation can be explained with given input values -> 0.027577 = (0.92*9.8*0.2)/(360-0.92*0.4).

FAQ

What is Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only?
Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only formula is defined as the deceleration of a vehicle when brakes are applied to the front wheels only, which is affected by the braking coefficient, gravity, and the distance between the center of gravity and the point of application of the braking force and is represented as a = (μbrake*g*x)/(L-μbrake*h) or Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle). Coefficient of Friction for Brake Retardation is a measure of the frictional force that opposes the motion of a vehicle, slowing it down during braking, Acceleration due to Gravity is the rate at which the velocity of an object decreases as it moves under the influence of gravity, slowing down the vehicle, Perpendicular distance of C.G is the shortest distance from the centre of gravity of a vehicle to the point where it is pivoted during retardation, Distance between Center of Rear and Front Wheels is the length between the center of the rear wheel and the center of the front wheel of a vehicle & Height of C.G. of Vehicle is the vertical distance of the center of gravity from the ground level of a vehicle, affecting its stability and balance.
How to calculate Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only?
Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only formula is defined as the deceleration of a vehicle when brakes are applied to the front wheels only, which is affected by the braking coefficient, gravity, and the distance between the center of gravity and the point of application of the braking force is calculated using Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle). To calculate Retardation of Vehicle when Vehicle Moves on Level Track if Brakes are Applied to Front Wheels only, you need Coefficient of Friction for Brake brake), Acceleration due to Gravity (g), Perpendicular Distance of C.G (x), Distance between Center of Rear and Front Wheels (L) & Height of C.G. of Vehicle (h). With our tool, you need to enter the respective value for Coefficient of Friction for Brake, Acceleration due to Gravity, Perpendicular Distance of C.G, Distance between Center of Rear and Front Wheels & Height of C.G. of Vehicle 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 Retardation of Vehicle?
In this formula, Retardation of Vehicle uses Coefficient of Friction for Brake, Acceleration due to Gravity, Perpendicular Distance of C.G, Distance between Center of Rear and Front Wheels & Height of C.G. of Vehicle. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Retardation of Vehicle = Acceleration due to Gravity*(Coefficient of Friction for Brake*cos(Angle of Inclination of plane to Horizontal)-sin(Angle of Inclination of plane to Horizontal))
  • Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*cos(Angle of Inclination of plane to Horizontal)*Perpendicular Distance of C.G)/(Distance between Center of Rear and Front Wheels-Coefficient of Friction for Brake*Height of C.G. of Vehicle)-Acceleration due to Gravity*sin(Angle of Inclination)
  • Retardation of Vehicle = (Coefficient of Friction for Brake*Acceleration due to Gravity*cos(Angle of Inclination of plane to Horizontal)*(Distance between Center of Rear and Front Wheels-Perpendicular Distance of C.G))/(Distance between Center of Rear and Front Wheels+Coefficient of Friction for Brake*Height of C.G. of Vehicle)-Acceleration due to Gravity*sin(Angle of Inclination of plane to Horizontal)
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