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The Atomicity is defined as the total number of atoms present in a molecule or element. Check FAQs
N=(U0.5[R]T)+56
N - Atomicity?U - Internal Molar Energy?T - Temperature?[R] - Universal gas constant?

Atomicity given Internal Molar Energy of Linear Molecule Example

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Here is how the Atomicity given Internal Molar Energy of Linear Molecule equation looks like with Values.

Here is how the Atomicity given Internal Molar Energy of Linear Molecule equation looks like with Units.

Here is how the Atomicity given Internal Molar Energy of Linear Molecule equation looks like.

1.1635Edit=(700Edit0.58.314585Edit)+56
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Atomicity given Internal Molar Energy of Linear Molecule Solution

Follow our step by step solution on how to calculate Atomicity given Internal Molar Energy of Linear Molecule?

FIRST Step Consider the formula
N=(U0.5[R]T)+56
Next Step Substitute values of Variables
N=(700J/mol0.5[R]85K)+56
Next Step Substitute values of Constants
N=(700J/mol0.58.314585K)+56
Next Step Prepare to Evaluate
N=(7000.58.314585)+56
Next Step Evaluate
N=1.16349273933297
LAST Step Rounding Answer
N=1.1635

Atomicity given Internal Molar Energy of Linear Molecule Formula Elements

Variables
Constants
Atomicity
The Atomicity is defined as the total number of atoms present in a molecule or element.
Symbol: N
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Internal Molar Energy
The Internal Molar Energy of a thermodynamic system is the energy contained within it. It is the energy necessary to create or prepare the system in any given internal state.
Symbol: U
Measurement: Energy Per MoleUnit: J/mol
Note: Value can be positive or negative.
Temperature
Temperature is the degree or intensity of heat present in a substance or object.
Symbol: T
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
Universal gas constant
Universal gas constant is a fundamental physical constant that appears in the ideal gas law, relating the pressure, volume, and temperature of an ideal gas.
Symbol: [R]
Value: 8.31446261815324

Other Formulas to find Atomicity

​Go Atomicity given Molar Heat Capacity at Constant Pressure of Linear Molecule
N=(Cp-[R][R])+2.53
​Go Atomicity given Molar Heat Capacity at Constant Pressure of Non-Linear Molecule
N=(Cp-[R][R])+33
​Go Atomicity given Molar Heat Capacity at Constant Volume of Linear Molecule
N=(Cv[R])+2.53
​Go Atomicity given Molar Heat Capacity at Constant Volume of Non-Linear Molecule
N=(Cv[R])+33

How to Evaluate Atomicity given Internal Molar Energy of Linear Molecule?

Atomicity given Internal Molar Energy of Linear Molecule evaluator uses Atomicity = ((Internal Molar Energy/(0.5*[R]*Temperature))+5)/6 to evaluate the Atomicity, The Atomicity given Internal Molar Energy of Linear Molecule is defined as the total number of atoms present in a molecule of a element. Atomicity is denoted by N symbol.

How to evaluate Atomicity given Internal Molar Energy of Linear Molecule using this online evaluator? To use this online evaluator for Atomicity given Internal Molar Energy of Linear Molecule, enter Internal Molar Energy (U) & Temperature (T) and hit the calculate button.

FAQs on Atomicity given Internal Molar Energy of Linear Molecule

What is the formula to find Atomicity given Internal Molar Energy of Linear Molecule?
The formula of Atomicity given Internal Molar Energy of Linear Molecule is expressed as Atomicity = ((Internal Molar Energy/(0.5*[R]*Temperature))+5)/6. Here is an example- 1.163493 = ((700/(0.5*[R]*85))+5)/6.
How to calculate Atomicity given Internal Molar Energy of Linear Molecule?
With Internal Molar Energy (U) & Temperature (T) we can find Atomicity given Internal Molar Energy of Linear Molecule using the formula - Atomicity = ((Internal Molar Energy/(0.5*[R]*Temperature))+5)/6. This formula also uses Universal gas constant .
What are the other ways to Calculate Atomicity?
Here are the different ways to Calculate Atomicity-
  • Atomicity=(((Molar Specific Heat Capacity at Constant Pressure-[R])/[R])+2.5)/3OpenImg
  • Atomicity=(((Molar Specific Heat Capacity at Constant Pressure-[R])/[R])+3)/3OpenImg
  • Atomicity=((Molar Specific Heat Capacity at Constant Volume/[R])+2.5)/3OpenImg
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