Dynamics and its applications (5 cr)
Code: TX00BU63-3053
General information
- Enrollment
-
05.05.2025 - 31.05.2025
Registration for implementation has not started yet.
- Timing
-
25.08.2025 - 21.12.2025
The implementation has not yet started.
- Number of ECTS credits allocated
- 5 cr
- Mode of delivery
- On-campus
- Unit
- (2019-2024) School of Automotive and Mechanical Engineering
- Teaching languages
- Finnish
- Degree programmes
- Automotive Engineering
- Teachers
- Hulda Aminoff
- Pasi Oikarinen
- Groups
-
AT24Ajoneuvosuunnittelun suuntautuminen aloitus syksy 2024
- Course
- TX00BU63
Objective
On completion of the course, the student will know how to determine the position, velocity and acceleration of a rigid body in plane motion.
The student will understand the relation between forces and accelerations, and know how to use equations of motion for solving forces and accelerations.
The student will be able to apply dynamics to practical problems of his /her field of study.
Content
1. Differential and integral calculus
2. Kinematics of rigid bodies in two dimensions: translation, rotation and general plane motion
3. Kinetics of rigid bodies in two dimensions
4. Applications of dynamics
Evaluation scale
0-5
Assessment criteria, satisfactory (1)
The student can solve basic problems in dynamics.
Assessment criteria, good (3)
The student can combine kinematics with the equations of motion of rigid bodies.
Assessment criteria, excellent (5)
The student is able to apply dynamics to practical problems of his or her field of study.
Assessment criteria, approved/failed
The student can solve basic problems in dynamics.
Qualifications
Fundamentals of Mathematics and Natural Sciences 1
Fundamentals of Mathematics and Natural Sciences 2
Statics
Objective
On completion of the course, the student will know how to determine the position, velocity and acceleration of a rigid body in plane motion.
The student will understand the relation between forces and accelerations, and know how to use equations of motion for solving forces and accelerations.
The student will be able to apply dynamics to practical problems of his /her field of study.
Content
1. Differential and integral calculus
2. Kinematics of rigid bodies in two dimensions: translation, rotation and general plane motion
3. Kinetics of rigid bodies in two dimensions
4. Applications of dynamics
Qualifications
Fundamentals of Mathematics and Natural Sciences 1
Fundamentals of Mathematics and Natural Sciences 2
Statics