Zero Point Energy of Particle in 2D SHO Solution

STEP 0: Pre-Calculation Summary
Formula Used
Zero Point Energy of Particle in 2D SHO = [h-]*Angular Frequency of Oscillator
Z.P.E = [h-]*ω
This formula uses 1 Constants, 2 Variables
Constants Used
[h-] - Reduced Planck constant Value Taken As 1.054571817E-34
Variables Used
Zero Point Energy of Particle in 2D SHO - (Measured in Joule) - Zero Point Energy of Particle in 2D SHO is the lowest possible energy possessed by the particle.
Angular Frequency of Oscillator - (Measured in Radian per Second) - Angular Frequency of Oscillator is the angular displacement of any element of the wave per unit of time or the rate of change of the phase of the waveform.
STEP 1: Convert Input(s) to Base Unit
Angular Frequency of Oscillator: 1.666 Radian per Second --> 1.666 Radian per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Z.P.E = [h-]*ω --> [h-]*1.666
Evaluating ... ...
Z.P.E = 1.75691661903176E-34
STEP 3: Convert Result to Output's Unit
1.75691661903176E-34 Joule --> No Conversion Required
FINAL ANSWER
1.75691661903176E-34 1.8E-34 Joule <-- Zero Point Energy of Particle in 2D SHO
(Calculation completed in 00.006 seconds)

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​ LaTeX ​ Go Energy Eigen Values of 1D SHO = (Energy Levels of 1D Oscillator+0.5)*([h-])*(Angular Frequency of Oscillator)
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Zero Point Energy of Particle in 1D SHO
​ LaTeX ​ Go Zero Point Energy of 1D SHO = 0.5*[h-]*Angular Frequency of Oscillator

Zero Point Energy of Particle in 2D SHO Formula

​LaTeX ​Go
Zero Point Energy of Particle in 2D SHO = [h-]*Angular Frequency of Oscillator
Z.P.E = [h-]*ω

What is degeneracy ?

Degeneracy refers to the fact that two or more stationary states of the same quantum-mechanical system may have the same energy even though their measurable wave functions are not the same.

How to Calculate Zero Point Energy of Particle in 2D SHO?

Zero Point Energy of Particle in 2D SHO calculator uses Zero Point Energy of Particle in 2D SHO = [h-]*Angular Frequency of Oscillator to calculate the Zero Point Energy of Particle in 2D SHO, The Zero Point Energy of Particle in 2D SHO formula is defined as the lowest energy that a particle in a 2D SHO can have. Zero Point Energy of Particle in 2D SHO is denoted by Z.P.E symbol.

How to calculate Zero Point Energy of Particle in 2D SHO using this online calculator? To use this online calculator for Zero Point Energy of Particle in 2D SHO, enter Angular Frequency of Oscillator (ω) and hit the calculate button. Here is how the Zero Point Energy of Particle in 2D SHO calculation can be explained with given input values -> 1.8E-34 = [h-]*1.666.

FAQ

What is Zero Point Energy of Particle in 2D SHO?
The Zero Point Energy of Particle in 2D SHO formula is defined as the lowest energy that a particle in a 2D SHO can have and is represented as Z.P.E = [h-]*ω or Zero Point Energy of Particle in 2D SHO = [h-]*Angular Frequency of Oscillator. Angular Frequency of Oscillator is the angular displacement of any element of the wave per unit of time or the rate of change of the phase of the waveform.
How to calculate Zero Point Energy of Particle in 2D SHO?
The Zero Point Energy of Particle in 2D SHO formula is defined as the lowest energy that a particle in a 2D SHO can have is calculated using Zero Point Energy of Particle in 2D SHO = [h-]*Angular Frequency of Oscillator. To calculate Zero Point Energy of Particle in 2D SHO, you need Angular Frequency of Oscillator (ω). With our tool, you need to enter the respective value for Angular Frequency of Oscillator 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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