Faculty of Science

Model (No 12)

Course Specification : كيمياء فيزيائية

2010 - 2011

 
Farabi Quality Management of Education and Learning - 4/12/2024
University :Mansoura University
Faculty :Faculty of Science
Department :Chemistry Department
1- Course data :-
Code: 43303
Course title: كيمياء فيزيائية
Year/Level: ثالثة نبات وكيمياء
Program Title:
  • Special Botany
Specialization:
Teaching Hours: Theoretical: 4Tutorial: 1Practical: 4
2- Course aims :-
  1. Introduce the basic concepts of chemical kinetics and photochemistry
  2. Study the general principles of electrochemistry
  3. study the general principles of chemical kinetics
3- Course Learning Outcomes :-
4- Course contents :-
NoTopicsWeek
1 Kinetics- Experimental- Photosensitized gas reactions- Effect of temperature
2 Photochemical equilibrium- Chemillumiscence
3 Surface Chemistry: Liquid-gas interface and liquid-liquid interface
4 The solid-gas interface- The solid-liquid interface- Charged interfaces
5Electrochemistry:Reversible processes: Reversible galvanic cells- EMF and its measurements- types of electrodes
6 relation between cell potential and free energy- types of cells (concentration cells- electrochemical cells- cells with and without transfer)- applications of EMF measurements
7 Irreversible processes: Types of over potential (ohmic- concentration activation) electrode kinetics- Tafel equation- exchange current mechanism of hydrogen and oxygen reduction- storage cells (reversible and irreversible)- fuel cells
8 Chemical kinetics and photochemistry:• Measurement of reaction rates- first, second and third order reaction
9 Determination of order of reaction"- Reversible, consecutive and parallel reactions
10 Energy of activation, Potential energy surfaces, calculation of activation energies
11 Collision theory of bimolecular reactions- collision theory of unimolecular reactions- Theory of the molecular reactions- Chain Reactions
12 Theory of absolute reaction rates, Applications of the theory to reactions in solutions, Entropy of activation, Influence of solvent and pressure on rates in solution- Primary salt effect in inoic reactions
13 Laws of Photochemistry- Consequences of light absorptions

5- Teaching and learning methods :-
SMethod
Lectures using data show and board
Problem classes and group tutorial
Reports and discussion groups
Laboratory work and assignment

6- Teaching and learning methods of disables :-
  1. The same as normal students

7- Student assessment :-
A. Timing
NoMethodWeek
1Final – term examination 14
2Oral examination 14
3Practical examination 12
4Quizzes4,8
5Report10
B. Degree
NoMethodDegree
1Mid_term examination0
2Final_term examination70
3Oral examination 10
4Practical examination 20
5Semester work0
6Other types of asessment0
Total100%

8- List of books and references
SItemType
1Course notes in physical chemistry
2Physical chemistry by: Gorden M. Borrow
3Physical applied chemistry by: Heald and smith
4www.elsevier.com

9- Matrix of knowledge and skills of the course
SContentStudy week
Kinetics- Experimental- Photosensitized gas reactions- Effect of temperature
Photochemical equilibrium- Chemillumiscence
Surface Chemistry: Liquid-gas interface and liquid-liquid interface
The solid-gas interface- The solid-liquid interface- Charged interfaces
Electrochemistry:Reversible processes: Reversible galvanic cells- EMF and its measurements- types of electrodes
relation between cell potential and free energy- types of cells (concentration cells- electrochemical cells- cells with and without transfer)- applications of EMF measurements
Irreversible processes: Types of over potential (ohmic- concentration activation) electrode kinetics- Tafel equation- exchange current mechanism of hydrogen and oxygen reduction- storage cells (reversible and irreversible)- fuel cells
Chemical kinetics and photochemistry:• Measurement of reaction rates- first, second and third order reaction
Determination of order of reaction"- Reversible, consecutive and parallel reactions
Energy of activation, Potential energy surfaces, calculation of activation energies
Collision theory of bimolecular reactions- collision theory of unimolecular reactions- Theory of the molecular reactions- Chain Reactions
Theory of absolute reaction rates, Applications of the theory to reactions in solutions, Entropy of activation, Influence of solvent and pressure on rates in solution- Primary salt effect in inoic reactions
Laws of Photochemistry- Consequences of light absorptions

Course Coordinator(s): -
  1. Mohamed Ali Morsy Ali
Head of department: -
Awad Ebrahim Ahmed Mohamed