Industrial Engineering

Physics I(ING116-B)

Course Code Course Name Semester Theory Practice Lab Credit ECTS
ING116-B Physics I 1 3 0 2 4 5
Prerequisites
Admission Requirements
Language of Instruction French
Course Type Compulsory
Course Level Bachelor Degree
Course Instructor(s) Erden TUĞCU etugcu@gsu.edu.tr (Email)
Assistant
Objective -
Content -1. Mathematical Introduction
• Vector analysis (Scalar/dot and vector/cross products)
• Cartesian and cylindrical coordinate systems
• Applications of differential and integral calculus
• Differential equations (Fundamental level for mechanics)
2. Kinematics
• Motion in one dimension (Position, velocity, and acceleration vectors)
• Motion in two and three dimensions (Projectile motion)
• Uniform circular motion
3. Dynamics
• Concept of force and free-body diagrams
• Newton's Laws of Motion
• Friction force and dynamics of circular motion (Centripetal force)
4. Kinetics (Work and Energy)
• Work-Kinetic Energy Theorem
• Conservative and non-conservative forces
• Potential energy
• Conservation of mechanical energy
5. Linear Momentum and Collisions
• Center of mass (Transition from point particles to rigid bodies)
• Linear momentum and Impulse
• Conservation of linear momentum
• Elastic and inelastic collisions

6. Rotational Kinematics and Dynamics
• Rotational kinematics of rigid bodies
• Moment of inertia and rotational kinetic energy
• Torque and Newton's 2nd Law for rotational motion
• Angular Momentum and its conservation
• Rolling motion (Combination of translation and rotation)
7. Oscillations and Simple Harmonic Motion (SHM)
• Hooke's Law and restoring force
• Kinematic equations of SHM (Time dependence of position, velocity, and acceleration)
• Energy transformations and conservation in SHM
• Applications: Simple pendulum and physical pendulum
• Introduction to damped and driven oscillations, Resonance
Course Learning Outcomes
Teaching and Learning Methods
References
Print the course contents
Theory Topics
Week Weekly Contents
Practice Topics
Week Weekly Contents
Contribution to Overall Grade
  Number Contribution
Contribution of in-term studies to overall grade 2 50
Contribution of final exam to overall grade 1 50
Toplam 3 100
In-Term Studies
  Number Contribution
Assignments 0 0
Presentation 0 0
Midterm Examinations (including preparation) 0 40
Project 0 0
Laboratory 0 10
Other Applications 0 0
Quiz 0 0
Term Paper/ Project 0 0
Portfolio Study 0 0
Reports 0 0
Learning Diary 0 0
Thesis/ Project 0 0
Seminar 0 0
Other 0 0
Make-up 0 0
Toplam 0 50
No Program Learning Outcomes Contribution
1 2 3 4 5
Activities Number Period Total Workload
Total Workload 0
Total Workload / 25 0.00
Credits ECTS 0
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