Partition functions

Rotational partition function

In chemistry, the rotational partition function relates the rotational degrees of freedom to the rotational part of the energy. (Wikipedia).

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Graph the Cotangent Function with a Phase Shift and Change in Period

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Learn How to Graph Cotangent Function with a Reflection Over the X Axis

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Graphing Cotangent with a Phase Shift and Vertical Translation

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Identify the Reflections, Period and Domain of the Cotangent Function

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Comparing the exponetial and logarithmic graphs

๐Ÿ‘‰ Learn all about graphing logarithmic functions. A logarithmic function is a function with logarithms in them. The graph of the parent function of a logarithmic function usually takes its domain from the positive x-axis. To graph a logarithmic function, it is usually useful to first graph

From playlist How to Graph Logarithmic Functions | Learn About

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Learn How to Graph the Cotangent Function with a Phase Shift

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Graphing Cotangent with a Phase Shift

๐Ÿ‘‰ Learn how to graph a cotangent function. To graph a cotangent function, we first determine the period (the distance/time for a complete oscillation), the phase shift (the horizontal shift from the parent function), the vertical shift (the vertical shift from the parent function) and the

From playlist How to Graph Trigonometric Functions

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Molecular Structure & Statistical Mechanics 131B. Lecture 24. Partition Functions Pt. 2

UCI Chem 131B Molecular Structure & Statistical Mechanics (Winter 2013) Lec 24. Molecular Structure & Statistical Mechanics -- Partition Functions -- Part 2. View the complete course: http://ocw.uci.edu/courses/chem_131b_molecular_structure_and_elementary_statistical_mechanics.html Instruc

From playlist Chem 131B: Week 10

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Thermodynamics and Chemical Dynamics 131C. Lecture 07. Vibrational Partition Functions.

UCI Chem 131C Thermodynamics and Chemical Dynamics (Spring 2012) Lec 07. Thermodynamics and Chemical Dynamics -- Vibrational Partition Functions -- View the complete course: http://ocw.uci.edu/courses/chem_131c_thermodynamics_and_chemical_dynamics.html Instructor: Reginald Penner, Ph.D.

From playlist Chemistry 131C: Thermodynamics and Chemical Dynamics

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Chem 131B. Molecular Structure & Statistical Mechanics. Lecture 23. Partition Functions Pt. 1

UCI Chem 131B Molecular Structure & Statistical Mechanics (Winter 2013) Lec 23. Molecular Structure & Statistical Mechanics -- Partition Functions -- Part 1. View the complete course: http://ocw.uci.edu/courses/chem_131b_molecular_structure_and_elementary_statistical_mechanics.html Instruc

From playlist Chem 131B: Molecular Structure & Statistical Mechanics

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Thermodynamics and Chemical Dynamics 131C. Lecture 11. Midterm I Review.

UCI Chem 131C Thermodynamics and Chemical Dynamics (Spring 2012) Lec 11. Thermodynamics and Chemical Dynamics -- Midterm I Review -- View the complete course: http://ocw.uci.edu/courses/chem_131c_thermodynamics_and_chemical_dynamics.html Instructor: Reginald Penner, Ph.D. License: Creati

From playlist Chemistry 131C: Thermodynamics and Chemical Dynamics

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Thermodynamics and Chemical Dynamics 131C. Lecture 06. The Rotational Partition Function.

UCI Chem 131C Thermodynamics and Chemical Dynamics (Spring 2012) Lec 06. Thermodynamics and Chemical Dynamics -- The Rotational Partition Function -- View the complete course: http://ocw.uci.edu/courses/chem_131c_thermodynamics_and_chemical_dynamics.html Instructor: Reginald Penner, Ph.D.

From playlist Chemistry 131C: Thermodynamics and Chemical Dynamics

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Better Algorithm Intuition

Data structure intuition is something that develops naturally for most software developers. In all languages, we rely heavily on standard containers and collections. Need fast insertion/lookup? Hashmap. Need a sorted data structure that stores unique values? Set. Duplicate values? Multiset

From playlist C++

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Finding the domain vertical asymptote and x intercepts of a logarithm

๐Ÿ‘‰ Learn how to graph logarithmic functions involving vertical shift. The logarithmic function is the inverse of the exponential function. To graph a logarithmic function, it is usually very useful to make the table of values of the function. This is done by choosing a range of values of x

From playlist How to Graph Logarithmic Functions with Vertical Shift

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Thermodynamics and Chemical Dynamics 131C. Lecture 05. The Equipartition Theorum.

UCI Chem 131C Thermodynamics and Chemical Dynamics (Spring 2012) Lec 05. Thermodynamics and Chemical Dynamics -- The Equipartition Theorum -- View the complete course: http://ocw.uci.edu/courses/chem_131c_thermodynamics_and_chemical_dynamics.html Instructor: Reginald Penner, Ph.D. Licens

From playlist Chemistry 131C: Thermodynamics and Chemical Dynamics

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Graphing the logarithmic equation with a horizontal & vertical translation

๐Ÿ‘‰ Learn how to graph logarithmic functions involving vertical shift. The logarithmic function is the inverse of the exponential function. To graph a logarithmic function, it is usually very useful to make the table of values of the function. This is done by choosing a range of values of x

From playlist How to Graph Logarithmic Functions with Vertical Shift

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Thermodynamics and Chemical Dynamics 131C. Lecture 04. Entropy.

UCI Chem 131C Thermodynamics and Chemical Dynamics (Spring 2012) Lec 04. Thermodynamics and Chemical Dynamics -- Entropy -- View the complete course: http://ocw.uci.edu/courses/chem_131c_thermodynamics_and_chemical_dynamics.html Instructor: Reginald Penner, Ph.D. License: Creative Common

From playlist Chemistry 131C: Thermodynamics and Chemical Dynamics

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Where do logarithmic graphs come from

๐Ÿ‘‰ Learn all about graphing logarithmic functions. A logarithmic function is a function with logarithms in them. The graph of the parent function of a logarithmic function usually takes its domain from the positive x-axis. To graph a logarithmic function, it is usually useful to first graph

From playlist How to Graph Logarithmic Functions | Learn About

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Lec 26 | MIT 5.60 Thermodynamics & Kinetics, Spring 2008

Lecture 26: Partition function (Q) - many particles. View the complete course at: http://ocw.mit.edu/5-60S08 License: Creative Commons BY-NC-SA More information at http://ocw.mit.edu/terms More courses at http://ocw.mit.edu

From playlist MIT 5.60 Thermodynamics & Kinetics, Spring 2008

Related pages

Rotational spectroscopy | Boltzmann constant | Partition function (statistical mechanics) | Eulerโ€“Maclaurin formula | Planck constant | Vibrational partition function | Translational partition function | Point groups in three dimensions | Fermion | Spinโ€“statistics theorem | Diatomic molecule | Partition function (mathematics) | Rotational energy | Moment of inertia | Rigid rotor | Speed of light