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Wave Number of Particle for HA is the spatial frequency of a particle, measured in cycles per unit distance or radians per unit distance. Check FAQs
ν'HA=[Rydberg](112-1nfinal2)
ν'HA - Wave Number of Particle for HA?nfinal - Final Orbit?[Rydberg] - Rydberg Constant?

Rydberg's Equation for Lyman series Example

With values
With units
Only example

Here is how the Rydberg's Equation for Lyman series equation looks like with Values.

Here is how the Rydberg's Equation for Lyman series equation looks like with Units.

Here is how the Rydberg's Equation for Lyman series equation looks like.

1.1E+7Edit=1.1E+7(112-17Edit2)
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Rydberg's Equation for Lyman series Solution

Follow our step by step solution on how to calculate Rydberg's Equation for Lyman series?

FIRST Step Consider the formula
ν'HA=[Rydberg](112-1nfinal2)
Next Step Substitute values of Variables
ν'HA=[Rydberg](112-172)
Next Step Substitute values of Constants
ν'HA=1.1E+71/m(112-172)
Next Step Prepare to Evaluate
ν'HA=1.1E+7(112-172)
Next Step Evaluate
ν'HA=10749777.8938776Diopter
Next Step Convert to Output's Unit
ν'HA=10749777.89387761/m
LAST Step Rounding Answer
ν'HA=1.1E+71/m

Rydberg's Equation for Lyman series Formula Elements

Variables
Constants
Wave Number of Particle for HA
Wave Number of Particle for HA is the spatial frequency of a particle, measured in cycles per unit distance or radians per unit distance.
Symbol: ν'HA
Measurement: Wave NumberUnit: 1/m
Note: Value can be positive or negative.
Final Orbit
Final Orbit is a number that is related to the principal quantum number or energy quantum number.
Symbol: nfinal
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Rydberg Constant
Rydberg Constant is a fundamental physical constant that appears in the equations describing the spectral lines of hydrogen. It relates the energy levels of electrons in hydrogen-like atoms.
Symbol: [Rydberg]
Value: 10973731.6 1/m

Other Formulas to find Wave Number of Particle for HA

​Go Rydberg's Equation
ν'HA=[Rydberg](Z2)(1ninitial2-(1nfinal2))
​Go Rydberg's Equation for hydrogen
ν'HA=[Rydberg](1ninitial2-(1nfinal2))
​Go Rydberg's Equation for Balmer Series
ν'HA=[Rydberg](122-(1nfinal2))
​Go Rydberg's Equation for Paschen Series
ν'HA=[Rydberg](132-1nfinal2)

Other formulas in Hydrogen Spectrum category

​Go Number of Spectral Lines
ns=nquantum(nquantum-1)2
​Go Energy of Stationary State of Hydrogen
EV=-([Rydberg])(1nquantum2)
​Go Frequency associated with Photon
νphoton_HA=∆Eorbits[hP]
​Go Frequency of Photon given Energy Levels
νHA=[R](1ninitial2-(1nfinal2))

How to Evaluate Rydberg's Equation for Lyman series?

Rydberg's Equation for Lyman series evaluator uses Wave Number of Particle for HA = [Rydberg]*(1/(1^2)-1/(Final Orbit^2)) to evaluate the Wave Number of Particle for HA, The Rydberg's Equation for Lyman series is used to determine the wavelength of light emitted by an electron moving between the energy levels of an atom where the energy level is 1. Wave Number of Particle for HA is denoted by ν'HA symbol.

How to evaluate Rydberg's Equation for Lyman series using this online evaluator? To use this online evaluator for Rydberg's Equation for Lyman series, enter Final Orbit (nfinal) and hit the calculate button.

FAQs on Rydberg's Equation for Lyman series

What is the formula to find Rydberg's Equation for Lyman series?
The formula of Rydberg's Equation for Lyman series is expressed as Wave Number of Particle for HA = [Rydberg]*(1/(1^2)-1/(Final Orbit^2)). Here is an example- 1.1E+7 = [Rydberg]*(1/(1^2)-1/(7^2)).
How to calculate Rydberg's Equation for Lyman series?
With Final Orbit (nfinal) we can find Rydberg's Equation for Lyman series using the formula - Wave Number of Particle for HA = [Rydberg]*(1/(1^2)-1/(Final Orbit^2)). This formula also uses Rydberg Constant .
What are the other ways to Calculate Wave Number of Particle for HA?
Here are the different ways to Calculate Wave Number of Particle for HA-
  • Wave Number of Particle for HA=[Rydberg]*(Atomic Number^2)*(1/(Initial Orbit^2)-(1/(Final Orbit^2)))OpenImg
  • Wave Number of Particle for HA=[Rydberg]*(1/(Initial Orbit^2)-(1/(Final Orbit^2)))OpenImg
  • Wave Number of Particle for HA=[Rydberg]*(1/(2^2)-(1/(Final Orbit^2)))OpenImg
Can the Rydberg's Equation for Lyman series be negative?
Yes, the Rydberg's Equation for Lyman series, measured in Wave Number can be negative.
Which unit is used to measure Rydberg's Equation for Lyman series?
Rydberg's Equation for Lyman series is usually measured using the 1 per Meter[1/m] for Wave Number. Diopter[1/m], Kayser[1/m] are the few other units in which Rydberg's Equation for Lyman series can be measured.
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