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Atomic and molecular physics


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FİZ 254 ELECTRONICS II LAB.





FİZ 254 Electronics II Lab. (0-2)1 (ECTS:2)

Year/Semester

2nd Year/Spring semester

^ Type of Course

Compulsory

Course Contents

Transitors characteristics, transistor amplifiers, inspection stability, difference amplifier, difference amplifier, common collector amplifier, JFET characteristics, operator amplifier, basic operator amplifier, summing by operator amplifier, derivative and integrating circuits, reversing and nonreversing operator amplifiers, and-or gates made with simple switch, and-or gates made with diod, anaolog-digital convertors, digital-analog convertors.

Prerequisite/Recommended

None

^ Objective of the Course

The aim of this course is to te be able to use the experiments to learn the basic principles of the topics in semiconducting electronics such as transistors, amplifiers and digital electronics.

^ Textbook / Recommended Reading

Electronics II Laboratory Guide, Ondokuz Mayıs University

Form of Teaching

Lectures; practical classes

^ Form of Assessment

One written and one practical midterm exam (20 % each); one written and one practical final exam (30 % each)

Language of Instruction

Turkish

Instructor

Prof. Dr. Fahri ÇELİK; fcelik@omu.edu.tr



^




FİZ 301 QUANTUM MECHANICS I





FİZ 301 QUANTUM MECHANICS (4-0)4 (ECTS:8)

Year/Semester

3rd Year/Fall semester

^ Type of Course

Compulsory

Course Contents

Phenomena caused the birth of quantum mechanics. Schrödinger equation and its applications to translational and rotational motions. Postulates and general principles of quantum mechanics. Harmonic Oscillator. Motion on a ring. Rigid rotator. Hydrojen atom.

Prerequisite/Recommended

None

^ Objective of the Course

This course teaches the principles of quantum mechanics to the undergraduate students and gives examples of potantial barriers, harmonic oscillator and hydrogen atom for illustrations.

^ Textbook / Recommended Reading

F. Köksal, Quantum Chemistry for Scientists, OMU Press. 1992.

A.I.M. Rae, Quantum Mechanics, 3rd edition, IOP Publishing, 1992.

^ Form of Teaching

Lectures

Form of Assessment

One written midterm exam (40 % ); one written final exam (60 %)

^ Language of Instruction

Turkish

Instructor

Prof. Dr. Fevzi KÖKSAL, fkoksal@omu.edu.tr



^

FİZ 302 QUANTUM MECHANICS II





FİZ 302 QUANTUM MECHANICS (4-0)4 (ECTS:8)

Year/Semester

3rd Year/Spring semester

^ Type of Course

Compulsory

Course Contents

Angular momentum. Spin. Perturbation Theories. Density Matrix. Selection Rules. Scattering Theory. Born approximation. Partical wave analysis. Çok parçacıklı sistemler.

Prerequisite/Recommended

None

^ Objective of the Course

The objective of this course is to teach the students angular meomentum, spins and scattering; and to prepare them to understand the literature.

^ Textbook / Recommended Reading

F. Köksal, Quantum Chemistry for Scientists, OMU Press. 1992.

A.I.M. Rae, Quantum Mechanics, 3rd edition, IOP Publishing, 1992.

^ Form of Teaching

Lectures

Form of Assessment

One written midterm exam (40 % ); one written final exam (60 %)

^ Language of Instruction

Turkish

Instructor

Prof. Dr. Fevzi KÖKSAL, fkoksal@omu.edu.tr



^ FİZ 303 STATISTICAL PHYSICS


FİZ 303 Statistical Physics (4-0)4 (ECTS:6)

Year/Semester

3th Year/Fall semester

^ Type of Course

Compulsory

Course Contents

Fundamental concepts in statistical physics, statistical description of partical systems, interaction in macroscobic systems, statistical thermodynamics, application of statistical thermodynamics, distrubition functions in statistical physics, division functions in statistical physics, kinetic theory of ideal gases.

Prerequisite/Recommended

None

^ Objective of the Course

The aim of this course is to teach the basic principles of statistical physisc.

Textbook / Recommended Reading




^ Form of Teaching

Lectures

Form of Assessment

One written midterm exam (40 % ); one written final exam (60 %)

^ Language of Instruction

Turkish

Instructor

Prof. Dr. İsmet ŞENEL; ismets@omu.edu.tr








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