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COURSE INFORMATION
Course CodeCourse TitleL+P HourSemesterECTS
GENG 209STRENGHT3 + 03rd Semester 

COURSE DESCRIPTION
Course Level Bachelor's Degree
Course Type Compulsory
Course Objective To know the main principles of strength. To obtaine the strength parameters of materials and to solve of the dimensional problems.
Course Content Description and principles of strength. Strength situation and tensor. Stres-strain relationships. Linear elastisity and Hooke law. Poisson ratio and the other elastic parameters (coeeficient of elasticity, bulk modulus), strain energy. Thermic stresses. Planer stress conditions, principal stresses, maximum shear stresses, Mohr stres circle. Analytical and graphical stres analysis. Beam effects and diagrams.
Prerequisites No the prerequisite of lesson.
Corequisite No the corequisite of lesson.
Mode of Delivery Face to Face

COURSE LEARNING OUTCOMES
1learning the main concepts, principles and application methods, and problem solving of strength.

COURSE'S CONTRIBUTION TO PROGRAM
PO 01PO 02PO 03PO 04PO 05PO 06PO 07PO 08PO 09PO 10PO 11PO 12PO 13PO 14PO 15PO 16PO 17PO 18PO 19PO 20
LO 001231   353    2 2421 
Sub Total231   353    2 2421 
Contribution23100035300002024210

ECTS ALLOCATED BASED ON STUDENT WORKLOAD BY THE COURSE DESCRIPTION
ActivitiesQuantityDuration (Hour)Total Work Load (Hour)
Course Duration (14 weeks/theoric+practical)14342
Hours for off-the-classroom study (Pre-study, practice)14456
Mid-terms11010
Laboratory236
Final examination11616
Total Work Load

ECTS Credit of the Course






130

COURSE DETAILS
 Select Year   


 Course TermNoInstructors
Details 2020-2021 Fall1SEFER BERAN ÇELİK
Details 2019-2020 Fall1SEFER BERAN ÇELİK
Details 2017-2018 Summer1SEFER BERAN ÇELİK
Details 2017-2018 Fall1SEFER BERAN ÇELİK
Details 2016-2017 Summer1SEFER BERAN ÇELİK
Details 2016-2017 Fall1SEFER BERAN ÇELİK
Details 2016-2017 Fall2SEFER BERAN ÇELİK
Details 2015-2016 Fall1SEFER BERAN ÇELİK
Details 2014-2015 Summer1SEFER BERAN ÇELİK
Details 2014-2015 Summer1SEFER BERAN ÇELİK
Details 2014-2015 Fall2SEFER BERAN ÇELİK
Details 2013-2014 Summer1SEFER BERAN ÇELİK
Details 2013-2014 Summer1SEFER BERAN ÇELİK
Details 2013-2014 Fall2SEFER BERAN ÇELİK
Details 2012-2013 Summer1İBRAHİM ÇOBANOĞLU
Details 2012-2013 Summer1İBRAHİM ÇOBANOĞLU
Details 2012-2013 Summer1İBRAHİM ÇOBANOĞLU
Details 2012-2013 Fall2İBRAHİM ÇOBANOĞLU
Details 2011-2012 Fall2İBRAHİM ÇOBANOĞLU
Details 2010-2011 Summer1İBRAHİM ÇOBANOĞLU
Details 2010-2011 Fall1İBRAHİM ÇOBANOĞLU


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Course Details
Course Code Course Title L+P Hour Course Code Language Of Instruction Course Semester
GENG 209 STRENGHT 3 + 0 1 Turkish 2020-2021 Fall
Course Coordinator  E-Mail  Phone Number  Course Location Attendance
Prof. Dr. SEFER BERAN ÇELİK scelik@pau.edu.tr MUH B0021 %70
Goals To know the main principles of strength. To obtaine the strength parameters of materials and to solve of the dimensional problems.
Content Description and principles of strength. Strength situation and tensor. Stres-strain relationships. Linear elastisity and Hooke law. Poisson ratio and the other elastic parameters (coeeficient of elasticity, bulk modulus), strain energy. Thermic stresses. Planer stress conditions, principal stresses, maximum shear stresses, Mohr stres circle. Analytical and graphical stres analysis. Beam effects and diagrams.
Topics
WeeksTopics
1 Introduction to strength of materials
2 Basic principles of strength and strength properties of geo-materials
3 Introduction to stress analysis
4 Stress concept, classification, deformation, poisson ratio and problem solutions
5 Ductile and brittle materials, modulus of elasticity, stress tensor and problem solutions
6 Thermal stresses and problem solutions
7 Analytical stress analysis, stress components, shear stress components
8 Plane stress, principal stresses and problem solutions
9 Strength hypothesis’
10 Graphical stress analysis, mohr circle for plane stress conditions, principal planes and stresses and problem solutions
11 Maximum and minimum shear stresses, rules of mohr circle
12 Representation of plane stress conditions on mohr circle and problem solutions
13 Internal forces, determination of internal forces by cutting method and problem solutions
14 Shear strength and determination of shear strength of geo-materials by direct shear test in geological engineering, mohr failure hypothesis, determination of strength parameters under triaxial stress condition and problem solutions
Materials
Materials are not specified.
Resources
Course Assessment
Assesment MethodsPercentage (%)Assesment Methods Title
Final Exam60Final Exam
Midterm Exam40Midterm Exam
L+P: Lecture and Practice
PQ: Program Learning Outcomes
LO: Course Learning Outcomes