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Orbitals

Storyboard

>Model

ID:(1070, 0)



Broglie Wave Length

Definition

ID:(1717, 0)



Orbitals

Storyboard

Variables

Symbol
Text
Variable
Value
Units
Calculate
MKS Value
MKS Units
a
a
Bohr radius
m
v_n
v_n
Bohr Speed of the Electron in the Orbit n
m/s
\epsilon
epsilon
Dielectric constant
-
p
p
Momentum of the Electron
kg m/s
n
n
Orbital
-
r_n
r_n
Orbital Radius n as Bohr
m
h
h
Planck constant
Js
r
r
Radio Orbit
m
\lambda
lambda
Wavelength of De Broglie
m

Calculations


First, select the equation:   to ,  then, select the variable:   to 
2* pi * r = n * lambda p=\displaystyle\frac{h}{\lambda}r_n=n^2a a = h ^2* epsilon_0 /( pi * m * e ^2)v_n=\displaystyle\frac{e^2}{2n\epsilon_0h}av_nepsilonpnr_nhrlambda

Symbol
Equation
Solved
Translated

Calculations

Symbol
Equation
Solved
Translated

 Variable   Given   Calculate   Target :   Equation   To be used
2* pi * r = n * lambda p=\displaystyle\frac{h}{\lambda}r_n=n^2a a = h ^2* epsilon_0 /( pi * m * e ^2)v_n=\displaystyle\frac{e^2}{2n\epsilon_0h}av_nepsilonpnr_nhrlambda



Equations


Examples

a=\displaystyle\frac{h^2\epsilon_0}{\pi m e^2}

v_n=\displaystyle\frac{e^2}{2n\epsilon_0h}

p=\displaystyle\frac{h}{\lambda}

r_n=n^2a

2\pi r=n\lambda


>Model

ID:(1070, 0)