DynamicsLaajuus (3 cr)
Code: KC00CB81
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Qualifications
No previous studies are required.
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Materials
- Lecture material
Enrollment
11.11.2024 - 15.01.2025
Timing
07.01.2025 - 23.02.2025
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
AUTO22
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work. Distance learning via Teams if needed.
Completion alternatives
Course will be arranged via Teams-sessions such that distance-learning is possible if needed.
Student workload
Lectures, home exercises, exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam, home exercises.
Qualifications
No previous studies are required.
Enrollment
22.04.2024 - 09.10.2024
Timing
21.10.2024 - 18.12.2024
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
KONE22
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work. Distance learning via Teams if needed.
Completion alternatives
Course will be arranged via Teams-sessions such that distance-learning is possible if needed.
Student workload
Lectures, home exercises, exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam, home exercises.
Qualifications
No previous studies are required.
Enrollment
22.04.2024 - 04.09.2024
Timing
12.08.2024 - 13.10.2024
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Heikki Kokkonen
Student groups
-
MKONE22
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work. Distance learning via Teams.
Completion alternatives
Course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
13.11.2023 - 17.01.2024
Timing
08.01.2024 - 25.02.2024
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
AUTO21
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work. Distance learning via Teams if needed.
Completion alternatives
Course will be arranged via Teams-sessions such that distance-learning is possible if needed.
Student workload
Lectures, home exercises, exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam, home exercises.
Qualifications
No previous studies are required.
Enrollment
17.04.2023 - 11.10.2023
Timing
23.10.2023 - 17.12.2023
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
KONE21
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work
Completion alternatives
Dependent on the current circumstances course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
17.04.2023 - 06.09.2023
Timing
21.08.2023 - 15.10.2023
Credits
3 op
Virtual proportion (cr)
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
MKONE21
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work. Distance learning via Teams.
Completion alternatives
Course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
14.11.2022 - 15.01.2023
Timing
09.01.2023 - 26.02.2023
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
AUTO20
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work
Completion alternatives
Dependent on the current circumstances course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
16.04.2022 - 18.12.2022
Timing
24.10.2022 - 18.12.2022
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
KONE20
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work
Completion alternatives
Dependent on the current circumstances course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
16.04.2022 - 07.09.2022
Timing
15.08.2022 - 02.10.2022
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
MKONE20
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work
Completion alternatives
Dependent on the current circumstances course will be arranged via Teams-sessions such that distance-learning is possible.
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.
Enrollment
03.12.2021 - 23.01.2022
Timing
10.01.2022 - 27.02.2022
Credits
3 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Engineering, Mechanical Engineering
Teachers
- Samuel Suvanto
Student groups
-
AUTO19
Objective
Upon completion of the course, students will
- be able to apply basic knowledge of dynamics in the analysis of the dynamic bevahiour of structures.
- understand the basic phenomena of mechanical vibrations
- strengthen basics of mechanical engineering and design competences.
Content
- Basic principles of dynamics
- Kinematics of particles
- Kinematics of solids
- Basic principles of kinetics
- Vibrations of a system with a single degree of freedom
- Energy principle
Materials
The learning material is in the moodle
Teaching methods
Lectures and independent work
Student workload
Lectures and independent work
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Satisfactory (1-2): Student understands phenomena related to subject in general level. Student is able to answer to theory questions related to subject. Student is also able to identify and analyze the most relevant formulas related to subject.
Assessment criteria, good (3)
Good (3-4): Student is able to answer correctly to theory questions related to subject. In addition student knows how to apply calculation formulas to real life calculation problems.
Assessment criteria, excellent (5)
Excellent (5): Student understands the phenomena related to subject and is able to apply calculation methods to real life dimensioning problems.
Assessment methods and criteria
Exam
Qualifications
No previous studies are required.