Cs5209 Collective Problem Solving

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Berenice Pretlow

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Aug 5, 2024, 2:36:07 PM8/5/24
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In partial fulfilment of the requirements for the award of Bachelor of Arts (Honours) in Geography, Third Year Honours Students must take part in occasional field trips / project assignments related to their field of studies, as deemed necessary by the Department of Geography and submit a Term Paper at the end of the second semester.

In partial fulfilment of the requirements for the award of GIS & RS, Diploma Students must take part in occasional field trips / project assignments related to their field of studies, as deemed necessary by the Department of Geography and submit a Term Paper at the end of the academic year.


* Elective courses

This is industrial chemsitry in yangon university.

# In partial fulfillment of the requirements for the award of the Bachelor of Science in Industrial Chemistry degree, Fourth Year Students must take part in occasional field trips (to plants / factories) / project assignments, related to their field of studies, as deemed necessary by the Department of Industrial Chemistry and Submission of Term Paper at the end of the second semester.

First Year

Course Description

Industrial Chemistry I (Organic and Analytical Chemistry)

This module includes the structure and nomenclature of organic compounds and the fundamental principles of organic chemistry. It provides the basic concept of analytical chemistry and is also extended to acquire skills in various analytical techniques.

Learning Outcomes

At the end of the course, the students must be able to:

-Understand the fundamental principles and concepts related to Organic and Analytical Chemistry.

-Identify the organic compounds based on their functional groups.

-Apply these principles and concepts in the synthesis and processing of organic compounds.

-Analyze physical and chemical properties, methods of preparation, behavior of solutions and titration indicators.

-Solve the problems related to the calculation of acid base titration.

-Manipulate the Organic and Analytical experiments.


Industrial Chemistry II (Inorganic and Physical Chemistry)

This module provides concepts and principles in the synthesis and methods of processing. This unit deals with the study of different methods to analyze physical and chemical properties, behavior of gases, equilibrium constant. Moreover it can also study the operations and equipment for extraction of minerals and ores.

Learning Outcomes

At the end of the course, the students must be able to:

-Understand the fundamental principles and concepts related to basis chemistry of gases and liquids, colloids.

-Understand colloidal systems for industrial or technological interest.

-Analyze physical and chemical properties, behavior of gases, equilibrium constant.

-Manipulate the acid/base radicals and physical experiments.

-Identify the structure and configuration of atom, nature and energy of electron.

-Classify the position of metals and non-metals in the periodic table and their occurrence, extraction methods and application.

-Understand the methods of exploration, mining and concentrating of the ores, refining of metals and its processing.

Second Year

Course Description

Industrial Organic Chemistry I

This module aims to introduce the naming system, and physical and chemical properties of aromatic, heterocyclic compounds and natural products. This module includes the isolation techniques, preparation and physical and chemical properties of different types of industrially important derivatives.

Learning Outcomes

At the end of the course, the students must be able to:

-Understand the naming system of aromatic and heterocyclic compounds and their derivatives, the sources and pathways of preparation process.

-Apply the isolation techniques for extraction of alkaloids from plant materials.

-Categorize the physical and chemical properties of different types of carbohydrates, the preparation of different products (food and industrially important derivatives).

-Understand the types of amino acid and its nomenclature, physical and chemical properties, structure of amino acids and proteins.

Unit Operations I and II

This module aims to introduce industrial equipment for chemical processes, basic fluid dynamics and characteristics of different types of fluid flow. It provides the fundamentals of solid processing operation. This unit also involves fundamental principles and concepts related to calculation of mass and energy balances in heat exchangers, steam boilers and evaporators.

Learning Outcomes

Unit Operations I

At the end of the course, the students must be able to:

-Understand fundamental units, Dimensional Analysis, Process Development and Industrial Equipment for Chemical Processes.

-Understand the fundamental principles of flow of fluids, size separation, size reduction and sedimentation.

-Apply these mechanisms and principles in industrial engineering.

Unit Operations II

At the end of the course, the students must be able to:

-Understand the fundamental principles and concepts related to calculation of heat balances.

-Apply these concepts and principles in the analysis of specified systems.

-Understand the mechanism of heat exchangers, steam boilers and evaporators.

-Analyze the material and energy balances in heat exchangers, boilers and evaporators.


Industrial Stoichiometry

This module aims to introduce chemical engineering calculations. This unit is also extended to the development of mass and energy balances as applied to the wide range of chemical processes such as distillation columns, evaporators and reactors.

Learning Outcomes

At the end of the course, the students must be able to:

-Understand the fundamental principles and concepts related to calculation of mass and heat balances in distillation and evaporation.

-Analyze the systems of heat transferred and mass transferred across the boundary.

-Derive the appropriate mass and energy balance equations for a giving system.

Learning Outcomes

Industrial Physical Chemistry I

This module deals with the basic concepts and criteria of thermodynamic, phase rule and catalysis. It also involves energy transfer for closed and control volume systems, the interpretation and application of binary phase diagrams and also the important of catalyst in a chemical reaction and their effects on reaction rate.

At the end of the course, the students must be able to:

-Understand the basic concepts of chemical thermodynamic such as temperature, pressure, system, properties, process, state, cycles, equilibrium, enthalpy and entropy.

-Understand the first law, second law and third law of thermodynamics.

-Know heat effect, thermodynamics properties of fluids and flow process.

-Understand the principles of binary phase diagrams.

-Interpret and apply the process conditions.

-Study the importance of catalyst in a chemical reaction and their effects on reaction rate.

-Apply thermodynamics concepts in analyzing the thermal efficiencies of heat engines such as Carnot cycles and the coefficients of performance for refrigerators.


Fuel Science and Technology

This module gives an overview of coal and petroleum industry. It includes the origins, types and qualities of coal and petroleum and their refining as well as introduction to biofuels.

Learning Outcomes

At the end of the course, the students must be able to:

-Understand the fundamental concepts, production, purification and combustion mechanism of fossil fuels (solid, liquid and gaseous).

-Classify the fuels according to their phase state as solid, liquid and gaseous and according to their properties.

-Apply the laboratory tests for the analysis of coal to assess its properties.

-Solve the problems related to combustion of fuel used in chemical process industries.


Third Year

Course Description

Water and Wastewater Technology I & II

This module aims to introduce the general knowledge of natural waters, water characteristics and treatment of water and wastewater. This unit also provides the natural water resources and water quality standards for boiler feed water, surface and ground water, and wastewater.

Learning Outcomes

Water and Wastewater Technology I

At the end of the course, the students must be able to:

-Identify the physical, chemical and biological parameters of the surface and ground water.

-Calculate the chemical parameters such as alkalinity and hardness.

-Recognize the water quality standards.

-Illustrate the fundamentals of water, boiler feed water and wastewater treatment.

-Demonstrate knowledge and understanding of softening and aeration.

-Gain knowledge on disinfection of water.

-Manipulate the experiments of water analysis.

Water and Wastewater Technology II

At the end of the course, the students must be able to:

-Describe and demonstrate basic knowledge of key principles underlying disinfection, coagulation, flocculation, sedimentation and filtration of water and wastewater.

-Describe the physical, chemical, and biological processes necessary for wastewater treatment processes.

-Understand the water pollution control.

-Apply the operational steps in water and wastewater treatment processes.


Unit Processes I & II

Main topics included are hydrolysis, esterification, oxidation, nitration, sulfonation and sulfation reactions in chemical process industries. This module deals with the principles, properties and application of various types of reagents and prime factors influencing the design of nitrators, and also possible side reactions during sulphonation.

Learning Outcomes

Unit Processes I

At the end of the course, the students must be able to:

-Understand the process technologies of various organic and inorganic process industries.

-Describe the principles of oxidation, esterification and hydrolysis reactions in chemical process industries.

-Know the properties of various types of oxidizing gents, esterifying agents and hydrolyzing agents in chemical process industries.

-Apply the technology in manufacture of various inorganic and organic chemicals.

Unit Processes II

At the end of the course, the students must be able to:

-Understand the principles of nitration, sulfonation and sulfation reactions involved in chemical process industries.

-Understand various types of nitration agents, sulfonating and sulfating agents.

-Analyze the pathway of the derivatives through the reactions.

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