Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane Solution

STEP 0: Pre-Calculation Summary
Formula Used
Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g]
as = (m1-m2*sin(θp))/(m1+m2)*[g]
This formula uses 1 Constants, 1 Functions, 4 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Functions Used
sin - Sine is a trigonometric function that describes the ratio of the length of the opposite side of a right triangle to the length of the hypotenuse., sin(Angle)
Variables Used
Acceleration of Body - (Measured in Meter per Square Second) - Acceleration of Body is the rate of change in velocity to the change in time.
Mass of Left Body - (Measured in Kilogram) - Mass of Left Body is the measure of the quantity of matter that a body or an object contains.
Mass of Right Body - (Measured in Kilogram) - Mass of Right Body is the measure of the quantity of matter that a body or an object contains.
Inclination of Plane - (Measured in Radian) - The inclination of Plane is the angle a tilted ramp makes with the flat surface.
STEP 1: Convert Input(s) to Base Unit
Mass of Left Body: 29 Kilogram --> 29 Kilogram No Conversion Required
Mass of Right Body: 13.52 Kilogram --> 13.52 Kilogram No Conversion Required
Inclination of Plane: 13.23 Degree --> 0.230907060038806 Radian (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
as = (m1-m2*sin(θp))/(m1+m2)*[g] --> (29-13.52*sin(0.230907060038806))/(29+13.52)*[g]
Evaluating ... ...
as = 5.97481559451083
STEP 3: Convert Result to Output's Unit
5.97481559451083 Meter per Square Second --> No Conversion Required
FINAL ANSWER
5.97481559451083 5.974816 Meter per Square Second <-- Acceleration of Body
(Calculation completed in 00.004 seconds)

Credits

Created by Vinay Mishra
Indian Institute for Aeronautical Engineering and Information Technology (IIAEIT), Pune
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Verified by Sanjay Krishna
Amrita School of Engineering (ASE), Vallikavu
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4 Body Lying on Smooth Inclined Plane Calculators

Angle of Inclination given Acceleration
Go Inclination of Plane = asin((Mass of Left Body*[g]-Mass of Left Body*Acceleration of Body-Mass of Right Body*Acceleration of Body)/(Mass of Right Body*[g]))
Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane
Go Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g]
Angle of Inclination given Tension
Go Inclination of Plane = asin((Tension*(Mass of Left Body+Mass of Right Body))/(Mass of Left Body*Mass of Right Body*[g])-1)
Tension in String when One Body is Lying on Smooth Inclined Plane
Go Tension = (Mass of Left Body*Mass of Right Body)/(Mass of Left Body+Mass of Right Body)*[g]*(1+sin(Inclination of Plane))

Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane Formula

Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g]
as = (m1-m2*sin(θp))/(m1+m2)*[g]

What is the principle of inclined plane?

An inclined plane is a sloping surface, used for raising heavy bodies. The force required to move an object up the incline is less than the weight being raised, discounting friction.

How to Calculate Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane?

Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane calculator uses Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g] to calculate the Acceleration of Body, The Acceleration of system with bodies one hanging free and other lying on smooth inclined plane, is the function of the masses of both bodies and the inclination of the plane. Acceleration of Body is denoted by as symbol.

How to calculate Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane using this online calculator? To use this online calculator for Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane, enter Mass of Left Body (m1), Mass of Right Body (m2) & Inclination of Plane p) and hit the calculate button. Here is how the Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane calculation can be explained with given input values -> 5.974816 = (29-13.52*sin(0.230907060038806))/(29+13.52)*[g].

FAQ

What is Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane?
The Acceleration of system with bodies one hanging free and other lying on smooth inclined plane, is the function of the masses of both bodies and the inclination of the plane and is represented as as = (m1-m2*sin(θp))/(m1+m2)*[g] or Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g]. Mass of Left Body is the measure of the quantity of matter that a body or an object contains, Mass of Right Body is the measure of the quantity of matter that a body or an object contains & The inclination of Plane is the angle a tilted ramp makes with the flat surface.
How to calculate Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane?
The Acceleration of system with bodies one hanging free and other lying on smooth inclined plane, is the function of the masses of both bodies and the inclination of the plane is calculated using Acceleration of Body = (Mass of Left Body-Mass of Right Body*sin(Inclination of Plane))/(Mass of Left Body+Mass of Right Body)*[g]. To calculate Acceleration of System with Bodies One Hanging Free and Other Lying on Smooth Inclined Plane, you need Mass of Left Body (m1), Mass of Right Body (m2) & Inclination of Plane p). With our tool, you need to enter the respective value for Mass of Left Body, Mass of Right Body & Inclination of Plane 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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