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Radius of Orbit given AN is the distance from the center of orbit of an electron to a point on its surface. Check FAQs
rorbit_AN=(0.52910000000000)(nquantum2)Z
rorbit_AN - Radius of Orbit given AN?nquantum - Quantum Number?Z - Atomic Number?

Radius of Bohr's Orbit given Atomic Number Example

With values
With units
Only example

Here is how the Radius of Bohr's Orbit given Atomic Number equation looks like with Values.

Here is how the Radius of Bohr's Orbit given Atomic Number equation looks like with Units.

Here is how the Radius of Bohr's Orbit given Atomic Number equation looks like.

0.1992Edit=(0.52910000000000)(8Edit2)17Edit
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Radius of Bohr's Orbit given Atomic Number Solution

Follow our step by step solution on how to calculate Radius of Bohr's Orbit given Atomic Number?

FIRST Step Consider the formula
rorbit_AN=(0.52910000000000)(nquantum2)Z
Next Step Substitute values of Variables
rorbit_AN=(0.52910000000000)(82)17
Next Step Prepare to Evaluate
rorbit_AN=(0.52910000000000)(82)17
Next Step Evaluate
rorbit_AN=1.99152941176471E-10m
Next Step Convert to Output's Unit
rorbit_AN=0.199152941176471nm
LAST Step Rounding Answer
rorbit_AN=0.1992nm

Radius of Bohr's Orbit given Atomic Number Formula Elements

Variables
Radius of Orbit given AN
Radius of Orbit given AN is the distance from the center of orbit of an electron to a point on its surface.
Symbol: rorbit_AN
Measurement: LengthUnit: nm
Note: Value can be positive or negative.
Quantum Number
Quantum Number describe values of conserved quantities in the dynamics of a quantum system.
Symbol: nquantum
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Atomic Number
Atomic Number is the number of protons present inside the nucleus of an atom of an element.
Symbol: Z
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other Formulas to find Radius of Orbit given AN

​Go Radius of Bohr's Orbit
rorbit_AN=(nquantum2)([hP]2)4(π2)[Mass-e][Coulomb]Z([Charge-e]2)

Other formulas in Radius of Bohr's Orbit category

​Go Atomic Mass
M=mp+mn
​Go Change in Wave Number of Moving Particle
Nwave=1.097107(nf)2-(ni)2(nf2)(ni2)
​Go Number of Electrons in nth Shell
NElectron=(2(nquantum2))
​Go Orbital Frequency of Electron
forbital=1T

How to Evaluate Radius of Bohr's Orbit given Atomic Number?

Radius of Bohr's Orbit given Atomic Number evaluator uses Radius of Orbit given AN = ((0.529/10000000000)*(Quantum Number^2))/Atomic Number to evaluate the Radius of Orbit given AN, The Radius of Bohr's orbit given atomic number is the distance of a revolving electron from the center of the orbit to its surface. Radius of Orbit given AN is denoted by rorbit_AN symbol.

How to evaluate Radius of Bohr's Orbit given Atomic Number using this online evaluator? To use this online evaluator for Radius of Bohr's Orbit given Atomic Number, enter Quantum Number (nquantum) & Atomic Number (Z) and hit the calculate button.

FAQs on Radius of Bohr's Orbit given Atomic Number

What is the formula to find Radius of Bohr's Orbit given Atomic Number?
The formula of Radius of Bohr's Orbit given Atomic Number is expressed as Radius of Orbit given AN = ((0.529/10000000000)*(Quantum Number^2))/Atomic Number. Here is an example- 2E+8 = ((0.529/10000000000)*(8^2))/17.
How to calculate Radius of Bohr's Orbit given Atomic Number?
With Quantum Number (nquantum) & Atomic Number (Z) we can find Radius of Bohr's Orbit given Atomic Number using the formula - Radius of Orbit given AN = ((0.529/10000000000)*(Quantum Number^2))/Atomic Number.
What are the other ways to Calculate Radius of Orbit given AN?
Here are the different ways to Calculate Radius of Orbit given AN-
  • Radius of Orbit given AN=((Quantum Number^2)*([hP]^2))/(4*(pi^2)*[Mass-e]*[Coulomb]*Atomic Number*([Charge-e]^2))OpenImg
Can the Radius of Bohr's Orbit given Atomic Number be negative?
Yes, the Radius of Bohr's Orbit given Atomic Number, measured in Length can be negative.
Which unit is used to measure Radius of Bohr's Orbit given Atomic Number?
Radius of Bohr's Orbit given Atomic Number is usually measured using the Nanometer[nm] for Length. Meter[nm], Millimeter[nm], Kilometer[nm] are the few other units in which Radius of Bohr's Orbit given Atomic Number can be measured.
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