Kinetic Energy of Electron Solution

STEP 0: Pre-Calculation Summary
Formula Used
Energy of Atom = -2.178*10^(-18)*(Atomic Number)^2/(Quantum Number)^2
EeV = -2.178*10^(-18)*(Z)^2/(nquantum)^2
This formula uses 3 Variables
Variables Used
Energy of Atom - (Measured in Electron-Volt) - Energy of Atom is the energy consumed by the body when measured in electron volts.
Atomic Number - Atomic Number is the number of protons present inside the nucleus of an atom of an element.
Quantum Number - Quantum Number describe values of conserved quantities in the dynamics of a quantum system.
STEP 1: Convert Input(s) to Base Unit
Atomic Number: 17 --> No Conversion Required
Quantum Number: 8 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
EeV = -2.178*10^(-18)*(Z)^2/(nquantum)^2 --> -2.178*10^(-18)*(17)^2/(8)^2
Evaluating ... ...
EeV = -9.83503125E-18
STEP 3: Convert Result to Output's Unit
-1.57574641085916E-36 Joule --> No Conversion Required
FINAL ANSWER
-1.57574641085916E-36 -1.6E-36 Joule <-- Energy of Atom
(Calculation completed in 00.004 seconds)

Credits

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Created by Anirudh Singh
National Institute of Technology (NIT), Jamshedpur
Anirudh Singh has created this Calculator and 300+ more calculators!
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Verified by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Structure of Atom Calculators

Mass Number
​ LaTeX ​ Go Mass Number = Number of Protons+Number of Neutrons
Electric Charge
​ LaTeX ​ Go Electric Charge = Number of Electron*[Charge-e]
Number of Neutrons
​ LaTeX ​ Go Number of Neutrons = Mass Number-Atomic Number
Wave Number of Electromagnetic Wave
​ LaTeX ​ Go Wave Number = 1/Wavelength of Light Wave

Kinetic Energy of Electron Formula

​LaTeX ​Go
Energy of Atom = -2.178*10^(-18)*(Atomic Number)^2/(Quantum Number)^2
EeV = -2.178*10^(-18)*(Z)^2/(nquantum)^2

What is Bohr's theory?

Bohr's theory is a theory of atomic structure in which the hydrogen atom (Bohr atom ) is assumed to consist of a proton as nucleus, with a single electron moving in distinct circular orbits around it, each orbit corresponding to a specific quantized energy state: the theory was extended to other atoms.

How to Calculate Kinetic Energy of Electron?

Kinetic Energy of Electron calculator uses Energy of Atom = -2.178*10^(-18)*(Atomic Number)^2/(Quantum Number)^2 to calculate the Energy of Atom, The Kinetic Energy of Electron formula is defined as kinetic energy consumed by a moving particle when it moves from one point to another. Energy of Atom is denoted by EeV symbol.

How to calculate Kinetic Energy of Electron using this online calculator? To use this online calculator for Kinetic Energy of Electron, enter Atomic Number (Z) & Quantum Number (nquantum) and hit the calculate button. Here is how the Kinetic Energy of Electron calculation can be explained with given input values -> -1.6E-36 = -2.178*10^(-18)*(17)^2/(8)^2.

FAQ

What is Kinetic Energy of Electron?
The Kinetic Energy of Electron formula is defined as kinetic energy consumed by a moving particle when it moves from one point to another and is represented as EeV = -2.178*10^(-18)*(Z)^2/(nquantum)^2 or Energy of Atom = -2.178*10^(-18)*(Atomic Number)^2/(Quantum Number)^2. Atomic Number is the number of protons present inside the nucleus of an atom of an element & Quantum Number describe values of conserved quantities in the dynamics of a quantum system.
How to calculate Kinetic Energy of Electron?
The Kinetic Energy of Electron formula is defined as kinetic energy consumed by a moving particle when it moves from one point to another is calculated using Energy of Atom = -2.178*10^(-18)*(Atomic Number)^2/(Quantum Number)^2. To calculate Kinetic Energy of Electron, you need Atomic Number (Z) & Quantum Number (nquantum). With our tool, you need to enter the respective value for Atomic Number & Quantum Number 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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