Difference between revisions of "IU:TestPage"
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=== Software and tools used within the course === |
=== Software and tools used within the course === |
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+ | ! Learning Activities !! Section 1 !! Section 2 !! Section 3 !! Section 4 !! Section 5 !! Section 6 |
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+ | | Homework and group projects || 1 || 1 || 1 || 1 || 1 || 1 |
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+ | | Midterm evaluation || 1 || 1 || 1 || 1 || 1 || 1 |
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+ | | Testing (written or computer based) || 1 || 1 || 1 || 1 || 1 || 1 |
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Revision as of 18:35, 19 April 2022
Analytical Geometry & Linear Algebra – I
- Course name: Analytical Geometry & Linear Algebra – I
- Code discipline:
- Subject area: ['fundamental principles of vector algebra,', 'concepts of basic geometry objects and their transformations in the plane and in the space']
Short Description
Prerequisites
Prerequisite subjects
Prerequisite topics
Course Topics
Section | Topics within the section |
---|---|
Vector algebra |
|
Introduction to matrices and determinants |
|
Lines in the plane and in the space |
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Planes in the space |
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Quadratic curves |
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Quadric surfaces |
|
Intended Learning Outcomes (ILOs)
What is the main purpose of this course?
This is an introductory course in analytical geometry and linear algebra. After having studied the course, students get to know fundamental principles of vector algebra and its applications in solving various geometry problems, different types of equations of lines and planes, conics and quadric surfaces, transformations in the plane and in the space. An introduction on matrices and determinants as a fundamental knowledge of linear algebra is also provided.
ILOs defined at three levels
Level 1: What concepts should a student know/remember/explain?
By the end of the course, the students should be able to ...
- List basic notions of vector algebra,
- recite the base form of the equations of transformations in planes and spaces,
- recall equations of lines and planes,
- identify the type of conic section,
- recognize the kind of quadric surfaces.
Level 2: What basic practical skills should a student be able to perform?
By the end of the course, the students should be able to ...
- explain the geometrical interpretation of the basic operations of vector algebra,
- restate equations of lines and planes in different forms,
- interpret the geometrical meaning of the conic sections in the mathematical expression,
- give the examples of the surfaces of revolution,
- understand the value of geometry in various fields of science and techniques.
Level 3: What complex comprehensive skills should a student be able to apply in real-life scenarios?
By the end of the course, the students should be able to ...
- Perform the basic operations of vector algebra,
- use different types of equations of lines and planes to solve the plane and space problems,
- represent the conic section in canonical form,
- compose the equation of quadric surface.
Grading
Course grading range
Grade | Range | Description of performance |
---|---|---|
A. Excellent | 80-100 | - |
B. Good | 60-79 | - |
C. Satisfactory | 40-59 | - |
D. Poor | 0-39 | - |
Course activities and grading breakdown
Activity Type | Percentage of the overall course grade |
---|---|
Labs/seminar classes | 10 |
Interim performance assessment | 20 |
Exams | 70 |
Recommendations for students on how to succeed in the course
Resources, literature and reference materials
Open access resources
Closed access resources
Software and tools used within the course
Teaching Methodology: Methods, techniques, & activities
Activities and Teaching Methods
Learning Activities | Section 1 | Section 2 | Section 3 | Section 4 | Section 5 | Section 6 |
---|---|---|---|---|---|---|
Homework and group projects | 1 | 1 | 1 | 1 | 1 | 1 |
Midterm evaluation | 1 | 1 | 1 | 1 | 1 | 1 |
Testing (written or computer based) | 1 | 1 | 1 | 1 | 1 | 1 |
Discussions | 1 | 1 | 1 | 1 | 1 | 1 |