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Course

CEED1214259

ENGINEERING MATHEMATICS

LECTURE
3
LAB
0
CREDITS
3
ECTS
8

REQUIRES

None

REQUIRED BY

None

TAUGHT IN

LANGUAGETurkishLEVELThird Cycle (Doctorate Degree)TYPEElective

AIM

Making sense of previously taken general mathematical expressions in terms of engineering practicality and application and applying mathematics with different engineering examples.

CONTENT

This course contains; Introductıon,Comparison of classical mathematics and engineering mathematics.,Determination of the logic substructure of classical mathematical equations.,Derivation of conservation equations.,Mass conservation equation.,Energy conservation equation.,Equation of momentum conservation.,The importance of conservation equations in engineering.,Investigation of basic equations of engineering.,The basis of numerical solutions.,The finite differences method.,The finite element method.,Recommendations for the future.,Reviewing topics..

LEARNING OUTCOMES

  1. 1

    Obtaines solution of differantial equations in computers.

    Taught by: Discussion Method, Self Study Method, Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework

  2. 2

    Analyses engineering problems through logical principles.

    Taught by: Discussion Method, Self Study Method, Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework

  3. 3

    Makes practical engineering solutions.

    Taught by: Discussion Method, Self Study Method, Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework

  4. 4

    Provides basic principles of engineering subjects on philosophical grounds.

    Taught by: Discussion Method, Self Study Method, Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework

WEEKLY PLAN

  1. WEEK 1

    Introductıon

    Preparation: Previewing book and lecture notes.

  2. WEEK 2

    Comparison of classical mathematics and engineering mathematics.

    Preparation: Previewing book and lecture notes.

  3. WEEK 3

    Determination of the logic substructure of classical mathematical equations.

    Preparation: Previewing book and lecture notes.

  4. WEEK 4

    Derivation of conservation equations.

    Preparation: Previewing book and lecture notes.

  5. WEEK 5

    Mass conservation equation.

    Preparation: Previewing book and lecture notes.

  6. WEEK 6

    Energy conservation equation.

    Preparation: Previewing book and lecture notes.

  7. WEEK 7

    Equation of momentum conservation.

    Preparation: Previewing book and lecture notes.

  8. WEEK 8

    The importance of conservation equations in engineering.

    Preparation: Previewing book and lecture notes.

  9. WEEK 9

    Investigation of basic equations of engineering.

    Preparation: Previewing book and lecture notes.

  10. WEEK 10

    The basis of numerical solutions.

    Preparation: Previewing book and lecture notes.

  11. WEEK 11

    The finite differences method.

    Preparation: Previewing book and lecture notes.

  12. WEEK 12

    The finite element method.

    Preparation: Previewing book and lecture notes.

  13. WEEK 13

    Recommendations for the future.

    Preparation: Previewing book and lecture notes.

  14. WEEK 14

    Reviewing topics.

    Preparation: Previewing book and lecture notes.

ASSESSMENT

  • Rate of Midterm Exam to Success50%
  • Rate of Final Exam to Success50%

WORKLOAD

ACTIVITYCOUNTHOURSTOTAL
Course Hours14342
Guided Problem Solving000
Resolution of Homework Problems and Submission as a Report14040
Term Project14040
Presentation of Project / Seminar000
Quiz000
Midterm Exam13030
General Exam17070
Performance Task, Maintenance Plan000

READING

  • Sen, Z., (2002). Statistical Data Processing Methods (Hydrology and meteorology) Water Foundation Publications 243 pages.
  • Lecture notes

TEACHING STAFF

  • Prof.Dr. Zekai ŞENCOORDINATOR
  • Prof.Dr. Zekai ŞEN