Türkçe English Curriculum Key Learning Outcomes
Integrated PhD Program in Civil Engineering
General Description
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Brief History
Bursa Uludağ University Civil Engineering Department was established by the Higher Education Council´s letter dated 24.11.1994 and numbered 2695. Doctoral education started in the 2013-2014 academic year.
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Qualification Awarded
Civil Engineering Graduate program is subjected to 180-240 ECTS credits in Doctorate education. The Doctorate (Ph.D.) Degree in Civil Engineering Graduate program is awarded to the graduates who have successfully completed all courses in the curriculum.
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Level of Qualification
Third Cycle
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Specific Admission Requirements
(1) Application requirements for the doctoral program are as follows: a) To have a bachelor´s degree (for integrated doctorate) or a thesis-based master´s degree. Candidates who have completed their bachelor´s degree or thesis-based master´s degree programs in foreign countries must also obtain an equivalence certificate from the Council of Higher Education. b) For bachelor´s degree graduates, to have a minimum of 3 points or an equivalent undergraduate graduation grade point average out of 4. c) Master´s degree graduates must have received at least 55 points from ALES, and undergraduate graduates must have received at least 80 standard full points in the score type of the program applied for. The Senate may increase the scores of ALES and exams accepted as equivalent to ALES by the Council of Higher Education. ç) To have at least 55 points from YDS in a language other than their mother tongue, such as English, German, French, Italian, Spanish, Russian, Arabic, Chinese, Japanese, Persian, or an equivalent score from an international foreign language exam accepted as equivalent by the ÖSYM Board of Directors. The Senate decides to increase these minimum scores if necessary, depending on the characteristics of the programs to be entered. d) The documents that candidates must provide if requested for application (reference letter, essay stating why they want to do a doctorate, international standard exams, etc.) are determined by the Senate at the beginning of each application period and stated in the announcement. Geri bildirim gönder Yan paneller Geçmiş Kaydedilenler
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Specific arrangements for the recognition of prior learning
The provisions in “Regulation on Transfer among Associate and Undergraduate Degree Programs, Double Major, and Subspecialty and the Principals of Credit Transfer among Institutions in Higher Education Institutions” are applied.
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Qualification Requirements and Regulations
(2) Evaluation and acceptance conditions are as follows: a) Unless the Senate decides to rank the applicants according to the ALES score for the relevant application period, the ranking is made according to the joint evaluation of the ALES score, undergraduate and/or graduate grade point average and the interview result, not to be less than 50%. In this case, for applicants with a bachelor´s degree, the weights are 50% ALES score, 20% undergraduate grade, 30% interview grade; for applicants with a master´s degree, the ALES score is 50%, 10% undergraduate grade, 10% graduate grade and 30% interview; if it is decided not to seek a bachelor´s degree from applicants with a master´s degree, the graduate grade is taken into account with a weight of 20%. The score calculated for admission must be at least 70 points and the ranking is made accordingly. b) In the interview, if requested, an oral evaluation is made by taking into account the candidate´s reference letter and the essay stating why they want to do a doctorate and their goals. c) In the event of equal scores, in determining the priority among candidates; Preference is given to those who have a high ALES or equivalent exam score or undergraduate course grade point average, graduate course grade point average or foreign language grade, respectively. d) In fractional grades, five digits from the decimal point are taken into account.
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Profile of The Programme
Graduates who successfully completed doctorate degree may apply to both in the same or related disciplines in higher education institutions at home or abroad to get a position in academic staff or to governmental R&D centers to get expert position.
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Key Learning Outcomes - TYYÇ - TAY Relationship
8.1
Key Learning Outcomes
1. To be able to use the theoretical and practical knowledge in the expert-level that has been gained through the doctorate program in civil engineering
2. To be able to conduct a work alone that requires specialty in his/her field; to be able to interpret the knowledge and practical skills in the field of specialty in combination with other disciplines and form new knowledge
3. To be able to solve problems in his/her field using research
4. To be able to improvise new strategical approaches and
5. To be able to conduct leadership in environments where there is a need of solution in the field of
6. To be able to evaluate in a criticizing manner the knowledge
7. To be able to convey others the recent advancements and own studies in the field by supporting with quantitative and
8. To be able to analyze in a criticizing manner, improve and change the social relations and factors affecting them
9. To be able to communicate in written and oral manners
10. technologies with the softwares at an advanced evel as required by of the field
11. To be able to conserve and teach social, scientific, cultural and ethical values in the process of ollection, interpretation, application and presentation of the data
12. To be able to develop strategical, political and application plans and evaluate the results in the framework of quality
8.2
TYYÇ - Key Learning Outcomes Relationship
Key Learning Outcomes TYYC-1 KNOWLEDGE (Theoretical - Applied) TYYC-2 SKILLS (Cognitive - Applied) TYYC-3 COMPETENCE (Independent Working and Responsibility) TYYC-4 COMPETENCE (Learning Competence) TYYC-5 COMPETENCE (Communication and Social Competence) TYYC-6 COMPETENCE (Field-Specific Competence)
1 To be able to use the theoretical and practical knowledge in the expert-level that has been gained through the doctorate program in civil engineering 1,2 1,2,3 1,2,3 1,2,3
2 To be able to conduct a work alone that requires specialty in his/her field; to be able to interpret the knowledge and practical skills in the field of specialty in combination with other disciplines and form new knowledge 1,2 1,2,3 1,2,3 1 1,2,3
3 To be able to solve problems in his/her field using research 1,2,3 1,2,3 1,2,3
4 To be able to improvise new strategical approaches and
5 To be able to conduct leadership in environments where there is a need of solution in the field of 1,2 1,2,3 1,2,3 1,2,3
6 To be able to evaluate in a criticizing manner the knowledge 1,2,3 1,2,3,4 1,2,3
7 To be able to convey others the recent advancements and own studies in the field by supporting with quantitative and 1 1,2,3,4 1,2,3
8 To be able to analyze in a criticizing manner, improve and change the social relations and factors affecting them 1 1,2,3,4 1,2,3
9 To be able to communicate in written and oral manners 1,2,3 1,2,3
10 technologies with the softwares at an advanced evel as required by of the field 1,2 1,2,3 1,2,3,4
11 To be able to conserve and teach social, scientific, cultural and ethical values in the process of ollection, interpretation, application and presentation of the data
12 To be able to develop strategical, political and application plans and evaluate the results in the framework of quality 1,2 1,2,3 1 1,2,3
8.3
TAY - Key Learning Outcomes Relationship
Key Learning Outcomes TAY-1 KNOWLEDGE (Theoretical - Applied) TAY-2 SKILLS (Cognitive - Applied) TAY-3 COMPETENCE (Independent Working and Responsibility) TAY-4 COMPETENCE (Learning Competence) TAY-5 COMPETENCE (Communication and Social Competence) TAY-6 COMPETENCE (Field-Specific Competence)
1 To be able to use the theoretical and practical knowledge in the expert-level that has been gained through the doctorate program in civil engineering 1,2,3,4 1,2,3,4 1,2,3 1,2,3 2,3,5 1,2
2 To be able to conduct a work alone that requires specialty in his/her field; to be able to interpret the knowledge and practical skills in the field of specialty in combination with other disciplines and form new knowledge 1,2,3,4 1,2,3 1,2 1,3 2,3,4,5 1,2,3
3 To be able to solve problems in his/her field using research 1,2,3 2,3,4 1,3,4 3,4 4,5,7,8 2,3,4
4 To be able to improvise new strategical approaches and 1,2 1 1,2,3 4,5,7,8 2,3,4
5 To be able to conduct leadership in environments where there is a need of solution in the field of 2,4 3 1,2,4,5 1,3
6 To be able to evaluate in a criticizing manner the knowledge 4 2,4 4 1,2
7 To be able to convey others the recent advancements and own studies in the field by supporting with quantitative and 3,4 5,6 1 2 4
8 To be able to analyze in a criticizing manner, improve and change the social relations and factors affecting them 4 2,3,5 1,2
9 To be able to communicate in written and oral manners 1
10 technologies with the softwares at an advanced evel as required by of the field 4 6 8
11 To be able to conserve and teach social, scientific, cultural and ethical values in the process of ollection, interpretation, application and presentation of the data 1,3 2,4 2,4 4,5,6
12 To be able to develop strategical, political and application plans and evaluate the results in the framework of quality 2,3 2,5 4 2,4,6 4
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Occupational Profiles of Graduates With Examples
The aim of the Bursa Uludağ University Civil Engineering Department PhD program is, a) to train Civil Engineer Doctors who have the ability to conduct independent research in the relevant field, to analyze scientific events from a broad and deep perspective, to comment on them, and to reach new syntheses. b) To develop the skills of doctoral candidates to develop new techniques using scientific methods and considering ethical values, to present their knowledge and experiences verbally and in writing, and to develop lifelong learning and teaching skills. The department carries out postgraduate studies with its qualified academic staff and developing opportunities for this purpose.
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Access to Further Studies
No next level
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Examination Regulations, Assessment and Grading
In order to take the exams for courses taken in postgraduate programs; 70% attendance in theoretical courses and 80% attendance in practical courses are required. Students are subjected to at least 1 midterm and 1 final exam for each course. Exams are evaluated with scores out of 100. A minimum score of 75 is required to be successful. The letter grades and coefficient equivalents of the scores out of 100 are as follows:
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Graduation Requirements
Doktora programını başarıyla tamamlamak için -Yeterlilik Koşulları ve Kuralları- bölümünde açıklanan koşulları yerine getirilmesi ve konusuyla ilgili bir alanda hazırladığı tezi seçilmiş jüri önünde başarıyla savunması gerekmektedir.
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Mode of Study
Full-Time
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Address and Contact Details
Program Başkanı ve Koordinatörü: Prof.Dr.Adem Doğangün,
Tel: 0 224 294 19 61, e-mail: adogangun@uludag.edu.tr ,
Uludağ Üniversitesi, Mühendislik Fakültesi, İnşaat Mühendisliği Bölümü Görükle Kampüsü, 16059, BURSA
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Facilities
The Department of Civil Engineering provides education with 20 faculty members in the Görükle Campus and the research areas of the department staff are spread over a wide range in the field of Civil Engineering. The department has a Vibration and Structure Technology and Hydraulics Laboratory to be used for both education and research.
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1. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS5043 STRUCTURAL DESIGN * Compulsory 3 0 0 6
INS6181 PHD SPECIALISED FIELD COURSE I Compulsory 4 0 0 5
INS6191 THESIS CONSULTING I Compulsory 0 1 0 1
Click to choose optional courses. 18
Total 30
2. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6182 PHD SPECIALISED FIELD COURSE II Compulsory 4 0 0 5
INS6192 THESIS CONSULTING II Compulsory 0 1 0 1
Click to choose optional courses. 24
Total 30
3. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6011 SOLID MECHANIC WITH FINITE ELEMENT APPLICATIONS Compulsory 3 0 0 6
INS6183 PHD SPECIALISED FIELD COURSE III Compulsory 4 0 0 5
INS6193 PHD THESIS CONSULTING III Compulsory 0 1 0 1
Click to choose optional courses. 18
Total 30
4. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
FEN6000 RESEARCH TECHNIQUES AND PUBLICATION ETHICS Compulsory 2 0 0 2
INS6172 SEMINAR Compulsory 0 2 0 4
INS6184 PHD SPECIALISED FIELD COURSE IV Compulsory 4 0 0 5
INS6194 PHD THESIS CONSULTING IV Compulsory 0 1 0 1
Click to choose optional courses. 18
Total 30
5. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6185 PHD SPECIALISED FIELD COURSE V Compulsory 4 0 0 5
INS6195 THESIS CONSULTING V Compulsory 0 1 0 15
YET6177 PHD PROFICIENCY EXAMINATION Compulsory 0 0 0 10
Total 30
6. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6186 PHD SPECIALISED FIELD COURSE VI Compulsory 4 0 0 5
INS6196 THESIS CONSULTING VI Compulsory 0 1 0 25
Total 30
7. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6187 PHD SPECIALISED FIELD COURSE VII Compulsory 4 0 0 5
INS6197 THESIS CONSULTING VII Compulsory 0 1 0 25
Total 30
8. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6188 PHD SPECIALISED FIELD COURSE VIII Compulsory 4 0 0 5
INS6198 THESIS CONSULTING VIII Compulsory 0 1 0 25
Total 30
9. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6189 ADVANCED TOPICS IN PHD IX Compulsory 4 0 0 5
INS6199 PHD THESIS IX Compulsory 0 1 0 25
Total 30
10. Semester
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6190 SPECIAL TOPICS IN PHD THESIS X Compulsory 4 0 0 5
INS6200 PHD THESIS CONSULTING X Compulsory 0 1 0 25
Total 30
1. Semester Optional Courses
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS5011 ELASTICITY THEORY Optional 3 0 0 6
INS5015 ADVANCED ENGINEERING MECHANICS Optional 3 0 0 6
INS5023 STABILITY OF STRUCTURES Optional 3 0 0 6
INS5031 STRUCTURAL DYNAMICS Optional 3 0 0 6
INS5033 ADVANCED REINFORCED CONCRETE Optional 3 0 0 6
INS5035 URBAN TRANSPORTATION SYSTEMS AND PLANNING Optional 3 0 0 6
INS5037 PERFORMANCED BASED DESIGN Optional 3 0 0 6
INS5041 CHEMICAL ADMIXTURE Optional 3 0 0 6
INS5045 SEISMIC ISOLATED BUILDING DESIGN Optional 3 0 0 6
INS5047 ADVANCED STEEL DESIGN I Optional 3 0 0 6
INS5051 GROUNDWATER HYDRAULICS Optional 3 0 0 6
INS5053 OPEN CHANNEL HYDRAULICS Optional 3 0 0 6
INS5061 COASTAL HYDRODYNAMICS Optional 3 0 0 6
INS5063 WATER BASED ENERGY GENERATION Optional 3 0 0 6
INS5065 HYDROLOGY OF DROUGHTS AND FLOODS Optional 3 0 0 6
INS5071 SOIL-STRUCTURE INTERACTION Optional 3 0 0 6
INS5075 DEEP EXCAVATIONS AND RETAINING STRUCTURES Optional 3 0 0 6
INS5077 GEOTECHNICAL EARTHQUAKE ENGINEERING Optional 3 0 0 6
INS5081 NON-MOTORIZED TRANSPORTATION PLANNING AND OPERATION Optional 3 0 0 6
INS5087 URBAN TRANSPORTATION SYSTEMS AND PLANNING Optional 3 0 0 6
2. Semester Optional Courses
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS5014 COMPUTER AIDED FINITE ELEMENT ANALYSIS Optional 3 0 0 6
INS5016 MECHANICS OF COMPOSITE MATERIALS Optional 3 0 0 6
INS5018 ADVANCED MATRIX METHODS IN EARTHQUAKE ENGINEERING Optional 3 0 0 6
INS5024 THEORY OF PLATES Optional 3 0 0 6
INS5032 STRUCTURAL EARTHQUAKE ENGINEERING Optional 3 0 0 6
INS5034 NON-LINEAR ANALYSIS OF REINFORCED CONCRETE STRUCTURES Optional 3 0 0 6
INS5038 REINFORCED CONCRETE BRIDGE DESIGN Optional 3 0 0 6
INS5042 SPECIAL CONCRETE Optional 3 0 0 6
INS5044 INDUSTRIAL STEEL STRUCTURES Optional 3 0 0 6
INS5056 ADVANCED COMPUTER APPLICATIONS IN HYDRAULICS Optional 3 0 0 6
INS5058 ADVANCED GIS APPLICATIONS IN HYDROLOGY Optional 3 0 0 6
INS5064 DESIGN OF PORTS AND COASTAL STRUCTURES Optional 3 0 0 6
INS5066 PLANNING AND DESIGN OF DAMS Optional 3 0 0 6
INS5072 ADVANCED FOUNDATION ENGINEERING Optional 3 0 0 6
INS5076 IN-SITU TESTS AND GEOTECHNICAL DESIGN Optional 3 0 0 6
INS5086 PAVEMENT DESING AND ANALYSIS Optional 3 0 0 6
3. Semester Optional Courses
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6031 SIMPLIFIED METHODS IN SOIL STRUCTURE INTERACTION Optional 3 0 0 6
INS6033 EARTHQUAKE RESISTANT STRUCTURAL DESIGN Optional 3 0 0 6
INS6035 SEISMIC BEHAVIOUR OF HISTORICAL BUILDINGS Optional 3 0 0 6
INS6037 FLUID STRUCTURE INTERACTION Optional 3 0 0 6
INS6039 DESIGN OF DUCTILE STEEL STRUCTURES Optional 3 0 0 6
INS6051 ADVANCED GROUNDWATER HYDROLOGY Optional 3 0 0 6
INS6053 COMPUTATIONAL FLUID DYNAMICS Optional 3 0 0 6
INS6061 WIND/WAVE CLIMATE AND STATISTICS Optional 3 0 0 6
INS6077 SOIL DYNMICS AND FOUNDATION DESIGN Optional 3 0 0 6
INS6087 TRAFFIC FLOW THEORY Optional 3 0 0 6
4. Semester Optional Courses
Course Code Course Title Type of Course T1 U2 L3 ECTS
INS6016 ENERGY AND VARIATIONAL METHODS IN MECHANICS Optional 3 0 0 6
INS6022 INITIAL AND BOUNDARY VALUE PROBLEMS Optional 3 0 0 6
INS6032 LIQUID TANKS DESIGN Optional 3 0 0 6
INS6034 REPAIRING AND STRENGTHENING OF STRUCTURES Optional 3 0 0 6
INS6036 PREFABRICATED STRUCTURES Optional 3 0 0 6
INS6038 MACHINE FOUNDATIONS Optional 3 0 0 6
INS6042 DIMENSIONAL STABILITY OF CONCRETE Optional 3 0 0 6
INS6052 ADVANCED FLUID MECHANICS Optional 3 0 0 6
INS6062 STATISTICAL METHODS IN HYDROLOGY Optional 3 0 0 6
INS6064 FUNDAMENTALS OF RIVER ENGINEERING Optional 3 0 0 6
INS6074 ADVANCED SOIL MECHANICS Optional 3 0 0 6
INS6088 PUBLIC TRANSPORTATION Optional 3 0 0 6
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