Energy Difference between Two Spin States Formula

Fx Copy
LaTeX Copy
Energy Difference between Spin States is defined as the energy separation between the spin states as the degenerate spin states divides into further two states in presence of external magnetic field. Check FAQs
ΔE+1/2-1/2=(gjμB)
ΔE+1/2-1/2 - Energy Difference between Spin States?gj - Lande g Factor?μ - Bohr Magneton?B - External Magnetic Field Strength?

Energy Difference between Two Spin States Example

With values
With units
Only example

Here is how the Energy Difference between Two Spin States equation looks like with Values.

Here is how the Energy Difference between Two Spin States equation looks like with Units.

Here is how the Energy Difference between Two Spin States equation looks like.

1.1E-37Edit=(1.5Edit0.0001Edit7E-34Edit)
You are here -
HomeIcon Home » Category Chemistry » Category EPR Spectroscopy » fx Energy Difference between Two Spin States

Energy Difference between Two Spin States Solution

Follow our step by step solution on how to calculate Energy Difference between Two Spin States?

FIRST Step Consider the formula
ΔE+1/2-1/2=(gjμB)
Next Step Substitute values of Variables
ΔE+1/2-1/2=(1.50.0001A*m²7E-34A/m)
Next Step Prepare to Evaluate
ΔE+1/2-1/2=(1.50.00017E-34)
Next Step Evaluate
ΔE+1/2-1/2=1.05E-37Diopter
Next Step Convert to Output's Unit
ΔE+1/2-1/2=1.05E-371/m
LAST Step Rounding Answer
ΔE+1/2-1/2=1.1E-371/m

Energy Difference between Two Spin States Formula Elements

Variables
Energy Difference between Spin States
Energy Difference between Spin States is defined as the energy separation between the spin states as the degenerate spin states divides into further two states in presence of external magnetic field.
Symbol: ΔE+1/2-1/2
Measurement: Wave NumberUnit: 1/m
Note: Value should be between 0 to 10000.
Lande g Factor
Lande g Factor is a multiplicative term appearing in the expression for the energy levels of an atom in a weak magnetic field.
Symbol: gj
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Bohr Magneton
Bohr Magneton is the magnitude of the magnetic dipole moment of an electron orbiting an atom with such angular momentum.
Symbol: μ
Measurement: Magnetic MomentUnit: A*m²
Note: Value can be positive or negative.
External Magnetic Field Strength
External Magnetic Field Strength is produced by moving electric charges and the intrinsic magnetic moments of elementary particles associated with a fundamental quantum property, their spin.
Symbol: B
Measurement: Magnetic Field StrengthUnit: A/m
Note: Value can be positive or negative.

Other formulas in EPR Spectroscopy category

​Go Number of Lines Generated
Nlines=(2NnucleiI)+1
​Go Energy of Negative Spin State
E-1/2=-(12(gjμB))
​Go Lines Generated for Spin Half
NI=1/2=1+Nnuclei
​Go Applied Magnetic Field using External Field
Beff=B(1-σ)

How to Evaluate Energy Difference between Two Spin States?

Energy Difference between Two Spin States evaluator uses Energy Difference between Spin States = (Lande g Factor*Bohr Magneton*External Magnetic Field Strength) to evaluate the Energy Difference between Spin States, Energy Difference between Two Spin States is defined as the energy separation between the spin states as the degenerate spin states divides into further two states in presence of external magnetic field. Energy Difference between Spin States is denoted by ΔE+1/2-1/2 symbol.

How to evaluate Energy Difference between Two Spin States using this online evaluator? To use this online evaluator for Energy Difference between Two Spin States, enter Lande g Factor (gj), Bohr Magneton (μ) & External Magnetic Field Strength (B) and hit the calculate button.

FAQs on Energy Difference between Two Spin States

What is the formula to find Energy Difference between Two Spin States?
The formula of Energy Difference between Two Spin States is expressed as Energy Difference between Spin States = (Lande g Factor*Bohr Magneton*External Magnetic Field Strength). Here is an example- 1.1E-37 = (1.5*0.0001*7E-34).
How to calculate Energy Difference between Two Spin States?
With Lande g Factor (gj), Bohr Magneton (μ) & External Magnetic Field Strength (B) we can find Energy Difference between Two Spin States using the formula - Energy Difference between Spin States = (Lande g Factor*Bohr Magneton*External Magnetic Field Strength).
Can the Energy Difference between Two Spin States be negative?
Yes, the Energy Difference between Two Spin States, measured in Wave Number can be negative.
Which unit is used to measure Energy Difference between Two Spin States?
Energy Difference between Two Spin States 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 Energy Difference between Two Spin States can be measured.
Copied!