Tác giả :
Academic program
|
Thermal Engineering Technology
|
Major code
|
52510206
|
Types of training
|
Full time
|
Degree
|
Bachelor’s degree in Thermal
Engineering Technology
|
Training time
|
4 years
|
Degree awarding institution
|
HCMUTE
|
Training institution
|
HCMUTE
|
Prospective students
|
High school graduates
|
Admission Criteria
|
- As regulated by Ministry of
Education and Training
- The candidate
selection was based on the results of the national high school graduation
examination (Three subjects: Mathematics,
Physics, Chemistry (Group A); Mathematics, Physics, English (Group A1);
Mathematics, Literature, English (Group D1)) together with the 3-year
academic results at high school.
|
Total number of credits
|
150 credits
(excluding Physical Education and
National Defense Education credits)
The academic
program includes 150 credits (including 124 required credits and 26 elective
credits), in which general knowledge occupies 56 credits, fundamental
knowledge accounts for 28, specialized knowledge includes 36 and 10 of them
are for graduation thesis, exclusive of Physical Education and National
Defense Education.
The program
shows a good balance between generic, fundamental and specialized knowledge.
The program structure is coherent; the courses have been integrated.
|
Program content
|
Details are
described in the curriculum
|
Training procedure
|
The academic
program includes three main parts: Generic education, fundamental and
specialized knowledge (including Graduation thesis). All of them have strong
connection and are be taught by different teachers:
+
Lecturers from the Faculty of Foundation Science are in charge of
teaching generic knowledge.
+
Lecturers from the Faculty of Vehicles and Energy Engineering and
Faculty of Mechanical Engineering are in charge of teaching fundamental and
specialized knowledge.
+
Specific lecturers will instruct students to do research within 6
months in graduation thesis, which is aimed to bring opportunities to enhance
sharpen knowledge and skills for students.
The academic
program lasts 8 semesters. Excellent students are allowed to study more
credits in one semester; therefore, they can graduate sooner than others.
Maximum training time for program completion is 8 years.
|
Graduation conditions
|
Students
who have fully completed 150 credits of the program with the minimum
cumulative GPA of 5.0, are not involved in any criminal prosecution or under
suspension and have had the certificates of Physical Education and National
Defense Education are considered to qualify for graduation.
|
Extracurricular activities
|
Students are
encouraged to take part in different activities in art, music, voluntary
activities and community events.
|
The expected learning
outcomes of TET program
Group
of ELOs
|
ELOs
|
General
Knowledge
|
ELO 1: Apply basic knowledge
of mathematics and science into engineering and
acquire the ability
to learn at a higher level
|
Fundamental
Knowledge
|
ELO
2: Apply
fundamental knowledge in Thermal Engineering Technology.
ELO 3: Apply specialized
knowledge in designing, calculating, testing, and
diagnosing thermal systems
|
Professional
Skills
|
ELO 5: Analyze,
explain and reason to
solve Thermal engineering problems.
ELO 6: Experiment
and discover Thermal engineering knowledge.
ELO 7: Attain
the ability to think critically and systematically
about Thermal engineering problems.
ELO 8: Have
professional skills in Thermal Engineering Technology.
|
ELO 11: Conceive
ideas of thermal systems.
ELO 12: Calculate,
design, and simulate thermal
components and systems.
ELO 13: Deploy
systematically different activities in the field of thermal
engineering technology.
ELO 14: Operate
and manage systems in the field of thermal engineering technology.
|
Generic
Skills
|
ELO 9: Lead,
function in teams, and communicate well in writing and speaking forms.
ELO 10: Communicate
in technical English.
|
Attitude
and Awareness
|
ELO 4: Possess professional ethics and
professional working manner in Thermal Engineering Technology.
|
Credit distribution for knowledge
areas
Content
|
Number
of credits
|
Required
|
Elective
|
Total
|
(1)
|
(2)
|
(1)+(2)
|
Generic
knowledge
|
45
|
11
|
56
|
Political
theory
|
12
|
0
|
12
|
Social
sciences and humanities
|
0
|
6
|
6
|
English
|
9
|
0
|
9
|
Introduction
to Thermal Technology
|
3
|
0
|
3
|
Computing
|
3
|
0
|
3
|
Mathematics
and Natural Sciences
|
18
|
5
|
23
|
Specialised
knowledge
|
79
|
15
|
94
|
Fundamental
courses
|
24
|
4
|
28
|
Specialized
courses
|
25
|
11
|
36
|
Workshop
practice courses
|
18
|
0
|
18
|
Graduation
internship
|
2
|
0
|
2
|
Capstone
Project
|
10
|
0
|
10
|
Semester 1:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
LLCT150105
|
The basic
principles of Marxism-Leninism
|
5
|
|
2
|
INAT130130
|
Introduction to
Thermal Technology
|
3
|
|
3
|
ENGL130137
|
English 1
|
3
|
|
4
|
MATH130101
|
Advanced
Mathematics A1
|
3
|
|
5
|
PHYS130102
|
Fundamental Physics
1
|
3
|
|
6
|
VBPR131085
|
Visual Basic
Programming
|
3
|
|
7
|
PHED110513
|
Physical
Education 1 (without accumulation)
|
1
|
|
Total
|
20
|
Semester 2:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
LLCT120314
|
Ho Chi Minh's
Ideology
|
2
|
|
2
|
ENGL130237
|
English 2
|
3
|
|
3
|
GCHE130103
|
Fundamental
chemistry A1
|
3
|
|
4
|
MATH130301
|
Advanced
Mathematics A2
|
3
|
|
5
|
PHYS120202
|
Fundamental
Physics 2
|
2
|
|
6
|
PHYS110302
|
General Experimental Physics
|
1
|
|
7
|
|
Social sciences
and humanities (1)
|
|
2
|
8
|
MHAP110127
|
Mechanical handywork practice
|
1
|
|
9
|
LLCT230214
|
Revolution of
Vietnamese Communist Party
|
3
|
|
10
|
PHED110613
|
Physical
Education 2 (without accumulation)
|
1
|
|
11
|
GDQP008031
|
National defence
education (without accumulation)
|
4
|
|
Total
|
20
|
Semester 3:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
MATH130301
|
Advanced
Mathematics A3
|
3
|
|
2
|
|
Social sciences
and humanities (2)
|
|
2
|
3
|
ENGL330337
|
English 3
|
3
|
|
4
|
GELA220405
|
General Law
|
2
|
|
5
|
THER240232
|
Thermodynamics
|
4
|
|
6
|
THME220821
|
Theory Mechanics
|
2
|
|
7
|
STMA230121
|
Strength of Materials
|
3
|
|
8
|
MATH121201
|
Numerical Method
|
2
|
|
9
|
PHED130715
|
Physical Education 3
(without accumulation)
|
|
3
|
Total
|
21
|
Semester 4:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
MAPS130401
|
Probability and Applied Statistics
|
3
|
|
2
|
HEAT240332
|
Heat Transfer
|
4
|
|
3
|
REEN230532
|
Refrigeration
Engineering
|
3
|
|
4
|
|
Social sciences
and humanities (3)
|
|
2
|
5
|
EDDG230120
|
Descriptive
Geometry and Engineering
|
3
|
|
6
|
TMMP230320
|
Theory of
machine and machine design
|
3
|
|
7
|
FLUI220132
|
Applied Fluid Mechanics
|
2
|
|
Total
|
20
|
Semester 5:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
PFCO330232
|
Pums, Fans and
Compressors
|
3
|
|
2
|
COMP340732
|
Compressors and
refrigeration equipments
|
4
|
|
3
|
EEEN234062
|
Electrical and
Electronic Engineering
|
3
|
|
4
|
ENTE220432
|
English for
Thermal Engineering
|
2
|
|
5
|
BOIT330632
|
Steam Boilers
|
3
|
|
6
|
THMA221332
|
Thermal
Materials
|
Choose 2
|
4
|
METE320126
|
Metal Technology
|
OPTI423129
|
Optimization
|
THME221432
|
Thermal
Measurements
|
PICE220130
|
Internal
Combustion Engine Principles
|
PNHY320329
|
Hydraulic
Technology and Air Compress
|
AMIC320133
|
Applied
Microcontroller
|
7
|
HEEX321532
|
Heat Exchangers
|
Choose 1
|
2
|
PTPA321632
|
Principles of
Thermal Process Automation
|
ENEC320832
|
Energy Economics
|
PLCT220146
|
PLC
|
STRT321731
|
Special Topics
in Refrigeration Technology
|
STTT321832
|
Special Topics
in Thermal Technology
|
STRE321931
|
Special Topics
in Renewable Energy
|
Total
|
21
|
Semester 6:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
ACSY330932
|
Air Conditioning
Systems
|
3
|
|
2
|
DRYT331132
|
Drying
Technology and Distillation
|
3
|
|
3
|
RETP332132
|
Practice
of Refrigeration Technology 1
|
3
|
|
4
|
RETP332232
|
Practice
of Refrigeration Technology 2
|
3
|
|
5
|
RETP332332
|
Practice of Refrigeration
Technology 3
|
3
|
|
6
|
HEEX321532
|
Heat Exchangers
|
Choose
2
|
4
|
PTPA321632
|
Principles of
Thermal Process Automation
|
ENEC320832
|
Energy Economics
|
PLCT220146
|
PLC
|
STRT321731
|
Special Topics
in Refrigeration Technology
|
STTT321832
|
Special Topics
in Thermal Technology
|
STRE321931
|
Special Topics
in Renewable Energy
|
Total
|
19
|
Semester 7:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
THPP341032
|
Thermal Power
plants
|
4
|
|
2
|
RETP332432
|
Practice of
Refrigeration Technology 4
|
3
|
|
3
|
BOIP322732
|
Boiler Practice
|
2
|
|
4
|
DRYP332932
|
Drying Practice
|
3
|
|
5
|
HEEX321532
|
Heat Exchangers
|
Choose
2
|
4
|
PTPA321632
|
Principles of
Thermal Process Automation
|
ENEC320832
|
Energy Economics
|
PLCT220146
|
PLC
|
STRT321731
|
Special Topics in
Refrigeration Technology
|
STTT321832
|
Special Topics
in Thermal Technology
|
STRE321931
|
Special Topics
in Renewable Energy
|
6
|
REPR310132
|
Refrigeration
Technology Projects
|
Choose
1
|
1
|
THPR310232
|
Thermal Project
|
Total
|
17
|
Semester 8:
No.
|
Course
Code
|
Courses
Name
|
Number
of credits
|
Required
|
Elective
|
1
|
UNTH322732
|
Graduation
Internship
|
2
|
|
2
|
UNTH402832
|
Capstone Project
|
10
|
|
Total
|
12
|
Full Name:
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Email:
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