ME208 Dynamics and Vibrations

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Course Code Course Title Weekly Hours* ECTS Weekly Class Schedule
T P
ME208 Dynamics and Vibrations 3 2 6 MON/WED 10:30-11:45
Prerequisite ENS209 It is a prerequisite to
Lecturer Mohamed E. Yahia Office Hours / Room / Phone
Monday:
16:00-17:00
Tuesday:
16:00-17:00
Wednesday:
16:00-17:00
Thursday:
16:00-17:00
Friday:
16:00-17:00
A F1.34 - 033 957 227
E-mail myahia@ius.edu.ba
Assistant Nedžla Greda Assistant E-mail
Course Objectives * To provide students with a basic understanding of force and acceleration, work and energy, impulse and momentum in terms of Kinematics of a particle, and Kinetics of a rigid body. * To provide students with a basic understanding of the oscillating motion of a body or system of connected bodies.
Textbook Engineering Mechanics – Dynamics, R.C. Hibbeler, 13th edition
Learning Outcomes After successful  completion of the course, the student will be able to:
  1. Derive equations for the kinematics and kinetics for different objects.
  2. Derive and use equations for the kinetics of rigid bodies.
  3. Set up and solve equations of motion for rigid bodies.
  4. Apply work-energy principles in the solution of rigid-body dynamics problems
  5. Apply impluse-momentum principles in the solution of rigid-body dynamics problems.
  6. Analyze damped and undamped vibration as well as forced vibration.
Teaching Methods Class discussions with examples. Active tutorial sessions for engaged learning and continuous feedback on progress.
WEEK TOPIC REFERENCE
Week 1 Rectilinear Motion
Week 2 Curvilinear Motion
Week 3 Equation of Motion for a System of Particles
Week 4 Equation of Motion: Rectangular, Normarl/Tangential, and Cylindrical
Week 5 Principle of Work and Energy for a system of Particles
Week 6 Conservative Forces and Potential Energy
Week 7 Revisions and Midterm exam
Week 8 Principle of Linear Impulse and Moentum for a System of Particles
Week 9 Impact, and Angular Momentum.
Week 10 Planar Kinetics of a Rigid Body: Force and Acceleration.
Week 11 Planar Kinetics of a Rigid Body: Work and Energy.
Week 12 Planar Kinetics of a Rigid Body: Impulse and Momentum.
Week 13 Undamped Free Vibration.
Week 14 Energy Methods, Undamped Forced Vibration.
Week 15
Assessment Methods and Criteria Evaluation Tool Quantity Weight Alignment with LOs
Final Exam 1 40
Semester Evaluation Compenents
In-term Exam 1 30
Quizes 10 30
***     ECTS Credit Calculation     ***
 Activity Hours Weeks Student Workload Hours Activity Hours Weeks Student Workload Hours
Lecture Hours 3 14 42 Home Study 2 14 28
Quizes 1 10 10 Quizes 1 10 10
Active tutorials 2 13 26 Final Exam Study 20 1 20
        Total Workload Hours = 150
*T= Teaching, P= Practice ECTS Credit = 6
Course Academic Quality Assurance: Semester Student Survey Last Update Date: 19/03/2020
QR Code for https://ecampus.ius.edu.ba/course/ens209-statics

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