Wavelength given Angular Wave Number Solution

STEP 0: Pre-Calculation Summary
Formula Used
Wavelength of Wave = (2*pi)/Angular Wavenumber
λwave = (2*pi)/k
This formula uses 1 Constants, 2 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Wavelength of Wave - (Measured in Meter) - Wavelength of Wave is the distance between two consecutive compressions or two consecutive rarefactions of a wave.
Angular Wavenumber - (Measured in Meter) - Angular Wavenumber is the number of radians per unit distance and is known as spatial frequency.
STEP 1: Convert Input(s) to Base Unit
Angular Wavenumber: 0.63 Meter --> 0.63 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
λwave = (2*pi)/k --> (2*pi)/0.63
Evaluating ... ...
λwave = 9.97331001139617
STEP 3: Convert Result to Output's Unit
9.97331001139617 Meter --> No Conversion Required
FINAL ANSWER
9.97331001139617 9.97331 Meter <-- Wavelength of Wave
(Calculation completed in 00.004 seconds)

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​ Go Eigenvalue of Energy = (Angular Momentum Quantum Number*(Angular Momentum Quantum Number+1)*([hP])^2)/(2*Moment of Inertia)
Moment of Inertia given Eigen Value of Energy
​ Go Moment of Inertia = (Angular Momentum Quantum Number*(Angular Momentum Quantum Number+1)*([hP])^2)/(2*Eigenvalue of Energy)
Binding Energy of Photoelectron
​ Go Binding Energy of Photoelectron = ([hP]*Photon Frequency)-Kinetic Energy of Photoelectron-Work Function
Kinetic Energy of Photoelectron
​ Go Kinetic Energy of Photoelectron = ([hP]*Photon Frequency)-Binding Energy of Photoelectron-Work Function
Work Function
​ Go Work Function = ([hP]*Photon Frequency)-Binding Energy of Photoelectron-Kinetic Energy of Photoelectron
Frequency of Absorbed Radiation
​ Go Frequency of Absorbed Radiation = (Energy of Higher State-Energy of Lower State)/[hP]
Energy of Higher State
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Energy of Lower State
​ Go Energy of Lower State = (Frequency of Absorbed Radiation*[hP])+Energy of Higher State
Rydberg Constant given Compton Wavelength
​ Go Rydberg Constant = (Fine-Structure Constant)^2/(2*Compton Wavelength)
Coherence Length of Wave
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Range of Wavelength
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Wavelength given Angular Wave Number
​ Go Wavelength of Wave = (2*pi)/Angular Wavenumber
Angular Wavenumber
​ Go Angular Wavenumber = (2*pi)/Wavelength of Wave
Wavelength given Spectroscopic Wave Number
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Spectroscopic Wave Number
​ Go Spectroscopic Wavenumber = 1/Wavelength of Light Wave

Wavelength given Angular Wave Number Formula

Wavelength of Wave = (2*pi)/Angular Wavenumber
λwave = (2*pi)/k

What is Spectroscopy?

is the study of the interaction between matter and electromagnetic radiation as a function of the wavelength or frequency of the radiation. In simpler terms, spectroscopy is the precise study of color as generalized from visible light to all bands of the electromagnetic spectrum; indeed, historically, spectroscopy originated as the study of the wavelength dependence of the absorption by gas phase matter of visible light dispersed by a prism.

How to Calculate Wavelength given Angular Wave Number?

Wavelength given Angular Wave Number calculator uses Wavelength of Wave = (2*pi)/Angular Wavenumber to calculate the Wavelength of Wave, The Wavelength given Angular Wave Number formula is defined as the distance between two consecutive compressions or two consecutive rarefactions of a wave. Wavelength of Wave is denoted by λwave symbol.

How to calculate Wavelength given Angular Wave Number using this online calculator? To use this online calculator for Wavelength given Angular Wave Number, enter Angular Wavenumber (k) and hit the calculate button. Here is how the Wavelength given Angular Wave Number calculation can be explained with given input values -> 9.97331 = (2*pi)/0.63.

FAQ

What is Wavelength given Angular Wave Number?
The Wavelength given Angular Wave Number formula is defined as the distance between two consecutive compressions or two consecutive rarefactions of a wave and is represented as λwave = (2*pi)/k or Wavelength of Wave = (2*pi)/Angular Wavenumber. Angular Wavenumber is the number of radians per unit distance and is known as spatial frequency.
How to calculate Wavelength given Angular Wave Number?
The Wavelength given Angular Wave Number formula is defined as the distance between two consecutive compressions or two consecutive rarefactions of a wave is calculated using Wavelength of Wave = (2*pi)/Angular Wavenumber. To calculate Wavelength given Angular Wave Number, you need Angular Wavenumber (k). With our tool, you need to enter the respective value for Angular Wavenumber 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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