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Kinetic Energy of Wave per Unit Width is the energy associated with the motion of water particles as the wave propagates through a medium. Check FAQs
KE=TE-PE
KE - Kinetic Energy of Wave per Unit Width?TE - Total Energy of Wave per Width?PE - Potential Energy per Unit Width?

Kinetic Energy given Total Wave Energy Example

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With units
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Here is how the Kinetic Energy given Total Wave Energy equation looks like with Values.

Here is how the Kinetic Energy given Total Wave Energy equation looks like with Units.

Here is how the Kinetic Energy given Total Wave Energy equation looks like.

10.13Edit=20.26Edit-10.13Edit
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Kinetic Energy given Total Wave Energy Solution

Follow our step by step solution on how to calculate Kinetic Energy given Total Wave Energy?

FIRST Step Consider the formula
KE=TE-PE
Next Step Substitute values of Variables
KE=20.26J/m-10.13J/m
Next Step Prepare to Evaluate
KE=20.26-10.13
LAST Step Evaluate
KE=10.13J

Kinetic Energy given Total Wave Energy Formula Elements

Variables
Kinetic Energy of Wave per Unit Width
Kinetic Energy of Wave per Unit Width is the energy associated with the motion of water particles as the wave propagates through a medium.
Symbol: KE
Measurement: EnergyUnit: J
Note: Value should be greater than 0.
Total Energy of Wave per Width
Total Energy of Wave per Width is the sum of its kinetic energy and its potential energy.
Symbol: TE
Measurement: Energy per Unit LengthUnit: J/m
Note: Value can be positive or negative.
Potential Energy per Unit Width
Potential Energy per Unit Width is the amount of potential energy stored per unit distance along the width of a body or structure.
Symbol: PE
Measurement: Energy per Unit LengthUnit: J/m
Note: Value should be greater than 0.

Other Formulas to find Kinetic Energy of Wave per Unit Width

​Go Kinetic Energy due to Particle Motion
KE=(116)ρ[g](H2)λ

Other formulas in Kinetic Energy category

​Go Wave Height given Kinetic Energy due to Particle Motion
H=KE0.0625ρ[g]λ
​Go Wavelength for Kinetic Energy due to Particle Motion
λ=KE0.0625ρ[g]H2

How to Evaluate Kinetic Energy given Total Wave Energy?

Kinetic Energy given Total Wave Energy evaluator uses Kinetic Energy of Wave per Unit Width = Total Energy of Wave per Width-Potential Energy per Unit Width to evaluate the Kinetic Energy of Wave per Unit Width, The Kinetic Energy given Total Wave Energy is defined as the linear theory that part of total energy is due to water particle velocities associated with wave motion. Kinetic Energy of Wave per Unit Width is denoted by KE symbol.

How to evaluate Kinetic Energy given Total Wave Energy using this online evaluator? To use this online evaluator for Kinetic Energy given Total Wave Energy, enter Total Energy of Wave per Width (TE) & Potential Energy per Unit Width (PE) and hit the calculate button.

FAQs on Kinetic Energy given Total Wave Energy

What is the formula to find Kinetic Energy given Total Wave Energy?
The formula of Kinetic Energy given Total Wave Energy is expressed as Kinetic Energy of Wave per Unit Width = Total Energy of Wave per Width-Potential Energy per Unit Width. Here is an example- 69.87 = 20.26-10.13.
How to calculate Kinetic Energy given Total Wave Energy?
With Total Energy of Wave per Width (TE) & Potential Energy per Unit Width (PE) we can find Kinetic Energy given Total Wave Energy using the formula - Kinetic Energy of Wave per Unit Width = Total Energy of Wave per Width-Potential Energy per Unit Width.
What are the other ways to Calculate Kinetic Energy of Wave per Unit Width?
Here are the different ways to Calculate Kinetic Energy of Wave per Unit Width-
  • Kinetic Energy of Wave per Unit Width=(1/16)*Density of Fluid*[g]*(Wave Height^2)*WavelengthOpenImg
Can the Kinetic Energy given Total Wave Energy be negative?
No, the Kinetic Energy given Total Wave Energy, measured in Energy cannot be negative.
Which unit is used to measure Kinetic Energy given Total Wave Energy?
Kinetic Energy given Total Wave Energy is usually measured using the Joule[J] for Energy. Kilojoule[J], Gigajoule[J], Megajoule[J] are the few other units in which Kinetic Energy given Total Wave Energy can be measured.
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