CH241 : Thermodynamics and Gases

Department

Department of Chemistry

Academic Program

Bachelor in Chemistry

Type

Compulsory

Credits

03

Prerequisite

CH102

Overview

This course aims to:• Identifying the properties of real and ideal gases and knowing their laws and theories.• Understand the basics and laws of thermodynamics.• Identify heat capacity and its types.

Intended learning outcomes

Knowledge & understandingTo familiarize the student with the properties and laws of real and ideal gasesLearn the basics and laws of thermodynamicsIdentify the types of heat capacityKnow the basic types and concepts of different thermodynamic processesMental skillsThe ability to deal with the laws of gasesThe ability to apply the mathematical relations of thermodynamics.Understand how to solve heat capacity calculation problems.The ability to distinguish between different types of thermodynamic processes.Practical & professional skillsSolve gas problemsThe ability to link the theoretical and practical foundations of thermodynamicsThe ability to relate capacitance laws to each other and apply them to calculate different types of heat capacity.Knowledge of the practical applications of calculating the properties of thermodynamic processes of thermal systems.

Teaching and learning methods

5 teaching and learning methodsDirect explanation of topics through theoretical lectures and office hours. The professor is responsible for answering students' inquiries.Problem solving and homework

Methods of assessments

first evaluation 25%second evaluation 25%final evaluation 50%

1. Course content(Course contents)

Scientific subject

The number of hours

a lecture

Lab

exercises

discussion

Independent study

number

weeks

Properties of ideal and real gases and their laws, kinetic theory of gases, distribution of molecular velocities and free path.

9

9

-

-

-

-

3

Introduction to thermodynamics - The system and its properties -Equilibrium and its types -The first law of thermodynamics and its applications Heat content, its types, and applications.

9

9

-

-

-

-

3

The Joule-Thomson effect and applied issues - the second law of thermodynamics - the carone cycle and the efficiency of the caronet machine and issuesTApply it.

6

6

-

-

-

-

2

Heat capacity, its types, and the relationship between heat capacities and issues.

6

6

-

-

-

-

2

The third law of thermodynamics and absolute entropy - free energy under the influence of pressure and temperature and applied issues.

3

3

-

-

-

-

1

Clauses and Kelvin - Entropy - Entropy change in inverse processes and applied problems.

6

6

-

-

-

-

2

Gibbs equation and applied problems.

3

3

-

-

-

-

1

1. the reviewer (References)

Reference book

Reference name

Author

publisher

Release

His whereabouts

Atkins' Physical Chemistry

Peter Atkins and Julio de Paula

Oxford University Press

8thEdition

- Department library

- electronic copy

Helping books

A Textbook of Physical Chemistry

SC Anand and AS Negi

New Age international

2ndEdition

- electronic copy

Principles of physical chemistry

Mr. Ali Hassan and

Muhammad Al-Sabah

Dar Al Maaref

1stEdition

- electronic copy

Introduction to Atmospheric Science (AT111)
Arabic language 1 (AR051)
General Physics І (Electricity ) (PH110)
General Chemistry 1 (CH101)
Mathematics 1 (MA100)
English Language 1 (EL101)
Principles of Atmospheric Science (AT112)
General Physics 2 (PH112)
General chemistry 2 (CH102)
General Chemistry 2 Laboratory (CH103)
Calculus and Analysis principle 2 (MA102)
Organic chemistry I (CH231)
Thermodynamics and Gases (CH241)
Ordinary Differential Equations (MA201)
Fundamentals of Inorganic Chemistry (CH221)
Analytical Chemistry(I) (CH211)
Practical Analytical Chemistry (CH213)
Methods for preparing inorganic compounds I (practical) (CH223)
Organic chemistry II (CH232)
Practical Analytical Chemistry, (CH214)
Thermodynamics and solutions (CH242)
Chemistry of Main Group Elements (CH222)
Analytical Chemistry(II) (CH212)
English language 2 (EL102)
Practical Analytical Chemistry (III) (CH013)
Organic chemistry Practical (CH031)
Industrial Chemistry (CH461)
Electrochemistry (CH341)
Thermodynamics and Solutions Lab (CH243)
Analytical Chemistry(III) (CH311)
Fundamentals of transition elements (CH321)
organic chemistry 3 (CH331)
Practical Industrial chemistry I (CH463)
Practical Analytical Chemistry(IV) (CH014)
Analytical Chemistry(IV) (CH312)
Transition elements chemistry studies (CH322)
Organic chemistry III Practical (CH333)
Biochemistry (CH451)
Organic chemistry IV (CH332)
Quantum chemistry (CH342)
Electrochemistry Lab (CH345)
Biochemistry lab I (CH453)
Molecular Spectroscopy (CH343)
Organic chemistry IV Practical (CH033)
Solid State Chemistry (CH344)
Practical Analytical Chemistry(V), (CH414)
Organometallic Chemistry (CH421)
Preparation and Methods for detection of inorganic compounds (CH424)
Industrial Chemistry (II) (CH462)
Analytical Chemistry(V) (CH441)
Nuclear chemistry (CH323)
Industrial Chemistry (II) Lab (CH464)
Kinetic Chemistry lab (CH043)
Kinetic Chemistry (CH442)