Kinetic Energy of System after Inelastic Collision Solution

STEP 0: Pre-Calculation Summary
Formula Used
Kinetic Energy of System After Inelastic Collision = ((Mass of Body A+Mass of Body B)*Final Speed of A and B After Inelastic Collision^2)/2
Ek = ((m1+m2)*v^2)/2
This formula uses 4 Variables
Variables Used
Kinetic Energy of System After Inelastic Collision - (Measured in Joule) - Kinetic Energy of System After Inelastic Collision is the total energy of motion of an object or system after an inelastic collision has occurred.
Mass of Body A - (Measured in Kilogram) - Mass of Body A is the quantity of matter in an object, a measure of its resistance to changes in its motion.
Mass of Body B - (Measured in Kilogram) - Mass of Body B is the quantity of matter in an object or particle, a measure of its resistance to changes in its motion.
Final Speed of A and B After Inelastic Collision - (Measured in Meter per Second) - Final Speed of A and B After Inelastic Collision is the velocity of objects A and B after they collide and stick together, resulting in a single combined mass.
STEP 1: Convert Input(s) to Base Unit
Mass of Body A: 30 Kilogram --> 30 Kilogram No Conversion Required
Mass of Body B: 13.2 Kilogram --> 13.2 Kilogram No Conversion Required
Final Speed of A and B After Inelastic Collision: 6.66 Meter per Second --> 6.66 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ek = ((m1+m2)*v^2)/2 --> ((30+13.2)*6.66^2)/2
Evaluating ... ...
Ek = 958.08096
STEP 3: Convert Result to Output's Unit
958.08096 Joule --> No Conversion Required
FINAL ANSWER
958.08096 958.081 Joule <-- Kinetic Energy of System After Inelastic Collision
(Calculation completed in 00.004 seconds)

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National Institute Of Technology (NIT), Hamirpur
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Kinetic Energy of System after Inelastic Collision Formula

​LaTeX ​Go
Kinetic Energy of System After Inelastic Collision = ((Mass of Body A+Mass of Body B)*Final Speed of A and B After Inelastic Collision^2)/2
Ek = ((m1+m2)*v^2)/2

What happens to Kinetic Energy in an Inelastic Collision?

An inelastic collision is a collision in which there is a loss of kinetic energy. While the momentum of the system is conserved in an inelastic collision, kinetic energy is not. This is because some kinetic energy had been transferred to something else.

How to Calculate Kinetic Energy of System after Inelastic Collision?

Kinetic Energy of System after Inelastic Collision calculator uses Kinetic Energy of System After Inelastic Collision = ((Mass of Body A+Mass of Body B)*Final Speed of A and B After Inelastic Collision^2)/2 to calculate the Kinetic Energy of System After Inelastic Collision, Kinetic Energy of System after Inelastic Collision formula is defined as a measure of the total kinetic energy possessed by two objects after they collide inelastically, resulting in a loss of kinetic energy and conversion into other forms of energy. It is a fundamental concept in understanding the kinetics of motion and collision dynamics. Kinetic Energy of System After Inelastic Collision is denoted by Ek symbol.

How to calculate Kinetic Energy of System after Inelastic Collision using this online calculator? To use this online calculator for Kinetic Energy of System after Inelastic Collision, enter Mass of Body A (m1), Mass of Body B (m2) & Final Speed of A and B After Inelastic Collision (v) and hit the calculate button. Here is how the Kinetic Energy of System after Inelastic Collision calculation can be explained with given input values -> 958.081 = ((30+13.2)*6.66^2)/2.

FAQ

What is Kinetic Energy of System after Inelastic Collision?
Kinetic Energy of System after Inelastic Collision formula is defined as a measure of the total kinetic energy possessed by two objects after they collide inelastically, resulting in a loss of kinetic energy and conversion into other forms of energy. It is a fundamental concept in understanding the kinetics of motion and collision dynamics and is represented as Ek = ((m1+m2)*v^2)/2 or Kinetic Energy of System After Inelastic Collision = ((Mass of Body A+Mass of Body B)*Final Speed of A and B After Inelastic Collision^2)/2. Mass of Body A is the quantity of matter in an object, a measure of its resistance to changes in its motion, Mass of Body B is the quantity of matter in an object or particle, a measure of its resistance to changes in its motion & Final Speed of A and B After Inelastic Collision is the velocity of objects A and B after they collide and stick together, resulting in a single combined mass.
How to calculate Kinetic Energy of System after Inelastic Collision?
Kinetic Energy of System after Inelastic Collision formula is defined as a measure of the total kinetic energy possessed by two objects after they collide inelastically, resulting in a loss of kinetic energy and conversion into other forms of energy. It is a fundamental concept in understanding the kinetics of motion and collision dynamics is calculated using Kinetic Energy of System After Inelastic Collision = ((Mass of Body A+Mass of Body B)*Final Speed of A and B After Inelastic Collision^2)/2. To calculate Kinetic Energy of System after Inelastic Collision, you need Mass of Body A (m1), Mass of Body B (m2) & Final Speed of A and B After Inelastic Collision (v). With our tool, you need to enter the respective value for Mass of Body A, Mass of Body B & Final Speed of A and B After Inelastic Collision 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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