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Energy given DB is the amount of work done. Check FAQs
EDB=[hP][c]λ
EDB - Energy given DB?λ - Wavelength?[hP] - Planck constant?[c] - Light speed in vacuum?

Energy of Particle given de Broglie Wavelength Example

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With units
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Here is how the Energy of Particle given de Broglie Wavelength equation looks like with Values.

Here is how the Energy of Particle given de Broglie Wavelength equation looks like with Units.

Here is how the Energy of Particle given de Broglie Wavelength equation looks like.

9.5E-17Edit=6.6E-343E+82.1Edit
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Energy of Particle given de Broglie Wavelength Solution

Follow our step by step solution on how to calculate Energy of Particle given de Broglie Wavelength?

FIRST Step Consider the formula
EDB=[hP][c]λ
Next Step Substitute values of Variables
EDB=[hP][c]2.1nm
Next Step Substitute values of Constants
EDB=6.6E-343E+8m/s2.1nm
Next Step Convert Units
EDB=6.6E-343E+8m/s2.1E-9m
Next Step Prepare to Evaluate
EDB=6.6E-343E+82.1E-9
Next Step Evaluate
EDB=9.45926582938932E-17J
LAST Step Rounding Answer
EDB=9.5E-17J

Energy of Particle given de Broglie Wavelength Formula Elements

Variables
Constants
Energy given DB
Energy given DB is the amount of work done.
Symbol: EDB
Measurement: EnergyUnit: J
Note: Value can be positive or negative.
Wavelength
Wavelength is the distance between identical points (adjacent crests) in the adjacent cycles of a waveform signal propagated in space or along a wire.
Symbol: λ
Measurement: WavelengthUnit: nm
Note: Value can be positive or negative.
Planck constant
Planck constant is a fundamental universal constant that defines the quantum nature of energy and relates the energy of a photon to its frequency.
Symbol: [hP]
Value: 6.626070040E-34
Light speed in vacuum
Light speed in vacuum is a fundamental physical constant representing the speed at which light propagates through a vacuum.
Symbol: [c]
Value: 299792458.0 m/s

Other Formulas to find Energy given DB

​Go Einstein's Mass Energy Relation
EDB=M([c]2)

Other formulas in De Broglie Hypothesis category

​Go De Broglie Wavelength of Particle in Circular Orbit
λCO=2πrorbitnquantum
​Go Number of Revolutions of Electron
nsec=ve2πrorbit
​Go Relation between de Broglie Wavelength and Kinetic Energy of Particle
λ=[hP]2KEm
​Go De Broglie Wavelength of Charged Particle given Potential
λP=[hP]2[Charge-e]Vm

How to Evaluate Energy of Particle given de Broglie Wavelength?

Energy of Particle given de Broglie Wavelength evaluator uses Energy given DB = ([hP]*[c])/Wavelength to evaluate the Energy given DB, The Energy of particle given de Broglie wavelength is defined as is the energy consumed by the particle to move from one point to another. Energy given DB is denoted by EDB symbol.

How to evaluate Energy of Particle given de Broglie Wavelength using this online evaluator? To use this online evaluator for Energy of Particle given de Broglie Wavelength, enter Wavelength (λ) and hit the calculate button.

FAQs on Energy of Particle given de Broglie Wavelength

What is the formula to find Energy of Particle given de Broglie Wavelength?
The formula of Energy of Particle given de Broglie Wavelength is expressed as Energy given DB = ([hP]*[c])/Wavelength. Here is an example- 9.5E-17 = ([hP]*[c])/2.1E-09.
How to calculate Energy of Particle given de Broglie Wavelength?
With Wavelength (λ) we can find Energy of Particle given de Broglie Wavelength using the formula - Energy given DB = ([hP]*[c])/Wavelength. This formula also uses Planck constant, Light speed in vacuum constant(s).
What are the other ways to Calculate Energy given DB?
Here are the different ways to Calculate Energy given DB-
  • Energy given DB=Mass in Dalton*([c]^2)OpenImg
Can the Energy of Particle given de Broglie Wavelength be negative?
Yes, the Energy of Particle given de Broglie Wavelength, measured in Energy can be negative.
Which unit is used to measure Energy of Particle given de Broglie Wavelength?
Energy of Particle given de Broglie Wavelength is usually measured using the Joule[J] for Energy. Kilojoule[J], Gigajoule[J], Megajoule[J] are the few other units in which Energy of Particle given de Broglie Wavelength can be measured.
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