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Course

İNM2210827

STRENGTH of MATERIALS II

Civil Engineering

LECTURE
4
LAB
0
CREDITS
4
ECTS
5
LANGUAGETurkishLEVELFirst Cycle (Bachelor's Degree)TYPERequired

AIM

1. Introduce plastic analysis and fracture hypotheses. 2. Teach how to determine the concepts of elastic curve of a beams using different methods. 3. Let students gain the ability to design beams in combined loading cases. 4. Let students comprehend energy methods and apply them to structural analysis. 5. Teach the principle of stability and apply it to columns.

CONTENT

This course contains; Combined Loading,Nonlinear Behaviour,Plasticity and Fracture Hypothesis,Shear and Bending,Shear and Bending,Elastic Curve,Elastic Curve,Eccentric Normal Force,Eccentric Normal Force,Torque and Bending,Energy Principles,Energy Principles,Stability,Stability.

LEARNING OUTCOMES

  1. 1

    1. Performs plastic analysis. Applies failure criterion for elastic analysis.

    Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz

  2. 2

    2. Perform stress analysis, sizing and safety conditions for combined loading cases.

    Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz

  3. 3

    3. Calculates elastic curve. Calculates support reactions of hyperstatic beams using elastic curve equation

    Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz

  4. 4

    4. Calculates displacements, support reactions of beams, trusses using energy methods.

    Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz

  5. 5

    5. Calculates buckling load.

    Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz

WEEKLY PLAN

  1. WEEK 1

    Combined Loading

  2. WEEK 2

    Nonlinear Behaviour

  3. WEEK 3

    Plasticity and Fracture Hypothesis

  4. WEEK 4

    Shear and Bending

  5. WEEK 5

    Shear and Bending

  6. WEEK 6

    Elastic Curve

  7. WEEK 7

    Elastic Curve

  8. WEEK 8

    Eccentric Normal Force

  9. WEEK 9

    Eccentric Normal Force

  10. WEEK 10

    Torque and Bending

  11. WEEK 11

    Energy Principles

  12. WEEK 12

    Energy Principles

  13. WEEK 13

    Stability

  14. WEEK 14

    Stability

ASSESSMENT

  • Rate of Midterm Exam to Success30%
  • Rate of Final Exam to Success70%

WORKLOAD

ACTIVITYCOUNTHOURSTOTAL
Course Hours14456
Guided Problem Solving14114
Resolution of Homework Problems and Submission as a Report21224
Term Project000
Presentation of Project / Seminar000
Quiz000
Midterm Exam12626
General Exam13030
Performance Task, Maintenance Plan000

READING

  • Omurtag, M. H., “Mukavemet (cilt 2)”, 4th Edition (2018), Birsen Yayınevi. ISBN: 9755114327
  • Hibbeler, R. C., "Mechanics of Materials in SI Units", 10th Edition (2018), Pearson. ISBN: 9781292178202

TEACHING STAFF

  • Prof.Dr. Mehmet Hakkı OMURTAGCOORDINATOR
  • Prof.Dr. Mehmet Hakkı OMURTAG