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Phys1 Force and Motion (3 cr)

Code: TZLF1300-3085

General information


Enrollment
20.11.2023 - 04.01.2024
Registration for the implementation has ended.
Timing
08.01.2024 - 30.04.2024
Implementation has ended.
Number of ECTS credits allocated
3 cr
Local portion
3 cr
Mode of delivery
Face-to-face
Unit
School of Technology
Campus
Main Campus
Teaching languages
Finnish
Seats
0 - 55
Degree programmes
Bachelor's Degree Programme in Construction and Civil Engineering
Teachers
Jaakko Leppä-aho
Pertti Ahonen
Groups
TRY23S1
Rakennus- ja yhdyskuntatekniikka (AMK)
Course
TZLF1300

Realization has 3 reservations. Total duration of reservations is 4 h 45 min.

Time Topic Location
Wed 06.03.2024 time 11:30 - 12:15
(0 h 45 min)
Fys1 Voima ja liike TZLF1300-3085
R35F208 Oppimistila
Fri 08.03.2024 time 11:30 - 13:30
(2 h 0 min)
Uusintatentti Fys 1 Voima ja liike
R35F305 Oppimistila
Fri 15.03.2024 time 10:00 - 12:00
(2 h 0 min)
Uusintatentti Fys1 Voima ja liike TZLF1300-3085
R35F305 Oppimistila
Changes to reservations may be possible.

Evaluation scale

0-5

Objective

Purpose:
You will learn the basic concepts of kinematics and dynamics. You will also learn logical thinking and problem solving strategies.

EUR-ACE Competences:
Knowledge and understanding 

Learning outcomes:
After completing this course you are able to identify the basic principles of kinematics and dynamics.

Content

In this course, you will learn the basics of kinematics and dynamics, which are essential for understanding the fundamental phenomena of mechanics. You will develop logical thinking and problem-solving skills that are useful in many engineering fields. Upon completion of the course, you will recognise the basic principles of kinematics and dynamics and be able to apply them to solve practical problems. This course will give you a strong foundation for further studies in mechanics and practical applications.

SI-units, scalars, vectors, uniformly accelerated one dimensional motion, projectile motion, Newton's laws, mechanical forces, uniform circular motion, rotational motion, torque and moment of inertia.

Materials

Suvanto, K. Tekniikan FYSIIKKA 1. Edita. All editions.

Teaching methods

- lessons
- self-study
- exercises

Exam schedules

Exam and two possible resits. Dates and places will be announced in the beginning of the course.

Student workload

One credit equals 27 hours of work, which means that this course needs about 81 working hours.

Assessment criteria, satisfactory (1)

Sufficient 1
You are able to recognize phenomena and the models attached to the field of the course.
You can solve simple course related problems. You can read different kinds of tables and graphs to get the right information. Your calculations may have some mistakes.

Satisfactory 2
You are able to understand phenomena and the models attached to the field of the course.
You can solve basic problems with the help of examples. You can read different kinds of tables and graphs to get the right information. Your calculations may have some mistakes.

Assessment criteria, good (3)

Good 3
You are able to understand phenomena and the models attached to the field of the course.
You can solve basic problems. You can read different kinds of tables and graphs and you are also able to produce them yourself. Your calculations may have some mistakes.

Very good 4
You are able to understand phenomena and the models attached to the field of the course.
You can solve challenging problems. You can read different kinds of tables and graphs and you are able to produce them yourself. You are also able to evaluate the assumptions and applicabilities of the models you are using. Your calculations are mainly right.

Assessment criteria, excellent (5)

Excellent 5
You are able to understand phenomena and the models attached to the field of the course.
You can solve challenging problems. You can read different kinds of tables and graphs and you are able to make make them yourself. You are also able to evaluate the assumptions and applicabilities of the models you are using. You can apply your knowledge to new situations. Your calculations are right but may have some careless errors.

Qualifications

Basic knowledge of elementary functions and ability to solve simple equations is required.

Further information

Assessment criteria: points from the exercises and the exam.
Open AMK: 5

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