Download Important Formulae on Equipartition Principle and Heat Capacity PDF

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Contents of the Important Formulae on Equipartition Principle and Heat Capacity PDF

List of 20 Important Formulae on Equipartition Principle and Heat Capacity Formulas

Atomicity given Molar Heat Capacity at Constant Pressure and Volume of Linear Molecule
Atomicity given Molar Vibrational Energy of Non-Linear Molecule
Atomicity given Ratio of Molar Heat Capacity of Linear Molecule
Atomicity given Vibrational Degree of Freedom in Non-Linear Molecule
Average Thermal Energy of Linear Polyatomic Gas Molecule given Atomicity
Average Thermal Energy of Non-linear polyatomic Gas Molecule given Atomicity
Degree of Freedom given Ratio of Molar Heat Capacity
Internal Molar Energy of Linear Molecule
Internal Molar Energy of Linear Molecule given Atomicity
Internal Molar Energy of Non-Linear Molecule
Internal Molar Energy of Non-Linear Molecule given Atomicity
Molar Heat Capacity at Constant Pressure given Compressibility
Molar Vibrational Energy of Linear Molecule
Molar Vibrational Energy of Non-Linear Molecule
Number of Modes in Non-Linear Molecule
Ratio of Molar Heat Capacity given Degree of Freedom
Ratio of Molar Heat Capacity of Linear Molecule
Total Kinetic Energy
Translational Energy
Vibrational Mode of Linear Molecule

Variables used in Important Formulae on Equipartition Principle and Heat Capacity PDF

  1. Cp Molar Specific Heat Capacity at Constant Pressure (Joule Per Kelvin Per Mole)
  2. Cv Molar Specific Heat Capacity at Constant Volume (Joule Per Kelvin Per Mole)
  3. Erot Rotational Energy (Joule)
  4. ET Translational Energy (Joule)
  5. Etotal Total Energy (Joule)
  6. Ev Molar Vibrational Energy (Joule Per Mole)
  7. Evf Vibrational Energy (Joule)
  8. Eviv Vibrational Molar Energy (Joule Per Mole)
  9. F Degree of Freedom
  10. Ix Moment of Inertia along X-axis (Kilogram Square Meter)
  11. Iy Moment of Inertia along Y-axis (Kilogram Square Meter)
  12. Iz Moment of Inertia along Z-axis (Kilogram Square Meter)
  13. KS Isentropic Compressibility (Square Meter per Newton)
  14. KT Isothermal Compressibility (Square Meter per Newton)
  15. Massflight path Mass (Kilogram)
  16. N Atomicity
  17. Nmodes Number of Normal modes for Non Linear
  18. Nvib Number of Normal modes
  19. px Momentum along X-axis (Kilogram Meter per Second)
  20. py Momentum along Y-axis (Kilogram Meter per Second)
  21. pz Momentum along Z-axis (Kilogram Meter per Second)
  22. Qatomicity Thermal Energy given Atomicity (Joule)
  23. T Temperature (Kelvin)
  24. Umolar Molar Internal Energy (Joule)
  25. γ Ratio of Molar Heat Capacity
  26. ωx Angular Velocity along X-axis (Degree per Second)
  27. ωy Angular Velocity along Y-axis (Degree per Second)
  28. ωz Angular Velocity along Z-axis (Degree per Second)

Constants, Functions and Measurements used in Important Formulae on Equipartition Principle and Heat Capacity PDF

  1. Constant: [BoltZ], 1.38064852E-23
    Boltzmann constant
  2. Constant: [R], 8.31446261815324
    Universal gas constant
  3. Measurement: Weight in Kilogram (kg)
    Weight Unit Conversion
  4. Measurement: Temperature in Kelvin (K)
    Temperature Unit Conversion
  5. Measurement: Energy in Joule (J)
    Energy Unit Conversion
  6. Measurement: Angular Velocity in Degree per Second (degree/s)
    Angular Velocity Unit Conversion
  7. Measurement: Moment of Inertia in Kilogram Square Meter (kg·m²)
    Moment of Inertia Unit Conversion
  8. Measurement: Momentum in Kilogram Meter per Second (kg*m/s)
    Momentum Unit Conversion
  9. Measurement: Energy Per Mole in Joule Per Mole (J/mol)
    Energy Per Mole Unit Conversion
  10. Measurement: Compressibility in Square Meter per Newton (m²/N)
    Compressibility Unit Conversion
  11. Measurement: Molar Specific Heat Capacity at Constant Pressure in Joule Per Kelvin Per Mole (J/K*mol)
    Molar Specific Heat Capacity at Constant Pressure Unit Conversion
  12. Measurement: Molar Specific Heat Capacity at Constant Volume in Joule Per Kelvin Per Mole (J/K*mol)
    Molar Specific Heat Capacity at Constant Volume Unit Conversion

Free Important Formulae on Equipartition Principle and Heat Capacity PDF

Get Free Important Formulae on Equipartition Principle and Heat Capacity PDF for Download today. Examples are included after each Formula with a link to a live Calculator! All the Formulas and Calculators support Unit Conversion as well. This PDF features 20 calculators from Chemistry. Inside, you'll discover a list of formulas such as Average Thermal Energy of Non-linear polyatomic Gas Molecule given Atomicity, Average Thermal Energy of Linear Polyatomic Gas Molecule given Atomicity and 20 more formulas!. The Variables, Functions and Constants are summarized at the end. Explore and share Important Formulae on Equipartition Principle and Heat Capacity PDFs!

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