Course syllabus

010623107-63 ปฏิบัติการเคมีไฟฟ้าของวัสดุ (Laboratory on Materials Electrochemistry)

Course Syllabus

Data entry : Asst.Prof. Dr.Kattareeya Taweesup
1. Course number and name

010623107-63 ปฏิบัติการเคมีไฟฟ้าของวัสดุ (Laboratory on Materials Electrochemistry)

2. Credits and contact hours

1(0-2-1)

3. Instructor’s or course coordinator’s name

Asst.Prof. Dr.Kattareeya Taweesup

4. Text book, title, author, and year

  1. J.J. Moore, Chemical Metallurgy, Butterworth & Co. (Publishers) Ltd, 1990
  2. A. Babich, D. Senk and H. W. Gudenau, Ironmaking (1st Edition), Stahleisen, Düsseldorf, 2016
  3. Chiranjlb Kumar Gupta, Chemical Metallurgy: Principle and Practice, Wiley-VCH Verlag GmbH&Co.KGaA Weinheim, Germany,2003
  4. D.R. Crow, Principles and applications of electrochemistry, fourth edition, Blackie Academic and professional, an imprint of Chapman & Hall, UK,1994

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Thermodynamics of aqueous solutions, kinetics of leaching and precipitation, solvent extraction and ion exchange, principle of hydrometallurgy. electrochemistry of aqueous solutions, current and energy efficiency, principle of pyrometallurgy, calcination, roasting and metal reduction, extraction of ferrous and nonferrous metals, analytical methods in electrochemistry, application in electrochemical engineering.
  2. prerequisites or co-requisites
    010623106-63 Materials Electrochemistry
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Required :

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
  2. explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
    ABET Student Outcome (SO) Listed in Criterion 3 Performance indicator
    SO6 an ability to develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
    • PI-6.1 Design an experiment plan
    • PI-6.2 Use data acquisition systems, hardware and software to collect data
    • PI-6.3 Interpret experimental data and results with respect to appropriate theoretical models
    • PI-6.4 Explain observed differences between model and experiment and draw conclusions

7. Brief list of topics to be covered
Week Topic Details Activities
Introduction to Laboratory Safety Introduction to Laboratory Safety Laboratory safety is the practice of following rules and procedures to prevent accidents, injuries, and exposure to hazardous materials in the laboratory. It includes wearing appropriate personal protective equipment (PPE), handling chemicals safely, using equipment correctly, and maintaining a clean and organized workspace. Understanding laboratory safety helps protect people, equipment, and the environment.
Oxidation of Steel Oxidation of Steel To study and compare the oxidation of low carbon steels at different positions, heating temperatures, and roughness.
Oxidation of Steel Oxidation of Steel To study and compare the oxidation of low carbon steels at different positions, heating temperatures, and roughness.
Electrolysis Electrolysis Electrolysis is a process that uses electrical energy to drive a chemical reaction that would not occur naturally. An electric current is passed through an electrolyte, causing chemical changes at the electrodes.
Electrolysis Electrolysis Electrolysis is a process that uses electrical energy to drive a chemical reaction that would not occur naturally. An electric current is passed through an electrolyte, causing chemical changes at the electrodes.
Electrolysis Electrolysis Electrolysis is a process that uses electrical energy to drive a chemical reaction that would not occur naturally. An electric current is passed through an electrolyte, causing chemical changes at the electrodes.
Current Density Effect on Cu Films Current Density Effect on Cu Films This experiment investigates how different current densities affect the properties of copper (Cu) films during electrodeposition. By varying the current density, the deposition rate, film thickness, surface morphology, grain size, and film quality can change.
Oxidation in stainless steel Oxidation in stainless steel To study and compare the oxidation of stainless steels (AISI 304) at different positions, heating temperatures, and roughness.
Carbothermic reduction Carbothermic reduction To study and compare the reduction of two oxides, i.e., iron oxide and chromium oxide in solid graphite and anthracite powders at different sizes in a furnace.
Electro-winning Electro-winning Electrowinning is an electrochemical process used to extract and recover metals from a solution by applying an electric current. During the process, metal ions in the electrolyte are reduced and deposited onto the cathode as pure metal.
Electroplating Electroplating Electroplating is a process that uses electrolysis to coat the surface of an object with a thin layer of metal. An electric current causes metal ions in a solution to deposit onto the object's surface, improving its appearance, corrosion resistance, wear resistance.
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Formative 70 70 Laboratory Report
Midterm 20 midterm examination
Formative 10 Class work/Attendance
The grading table
Grading Rank
>= 80% A
75% - 79.99% B+
70% - 74.99% B
65% - 69.99% C+
57% - 64.99% C
49% - 56.99% D+
40% - 48.99% D
0% - 39.99% F

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