VŠTE:DEG_a Descriptive Geometry - Course Information
DEG_a Descriptive Geometry
Institute of Technology and Business in České Budějovicewinter 2012
- Extent and Intensity
- 0/4. 3 credit(s). Type of Completion: z (credit).
- Teacher(s)
- Mgr. František Šíma, Ph.D. (seminar tutor)
RNDr. Milan Vacka (seminar tutor) - Guaranteed by
- RNDr. Milan Vacka
Department of Informatics and Natural Sciences – Faculty of Technology – Rector – Institute of Technology and Business in České Budějovice - Timetable of Seminar Groups
- DEG_a/S01: Mon 11:35–13:05 D515, Mon 13:10–14:40 B4, M. Vacka
DEG_a/S02: Tue 9:55–11:25 D515, Tue 11:35–13:05 A5, M. Vacka
DEG_a/S03: Tue 13:10–14:40 A2, Tue 14:45–16:15 D515, M. Vacka
DEG_a/S04: Thu 8:15–9:45 D415, Thu 9:55–11:25 A5, M. Vacka
DEG_a/S05: Thu 9:55–11:25 B4, Thu 11:35–13:05 A6, F. Šíma - Prerequisites
- Basic drawing skills
- Course Enrolment Limitations
- The course is also offered to the students of the fields other than those the course is directly associated with.
- fields of study / plans the course is directly associated with
- Building Management (programme VŠTE, ST)
- Course objectives supported by learning outcomes
- The aim of the subject is an acquisition of bases of Mongev´s projection, oblique projection, rectangular axonometric and dimensioned projection. These bases will be used in professional construction subjects. Next, areas of structural technical practice - roofs, topographic surfaces, linear surfaces. Afer the successful completion of the subject, the student will be able to display solids in different kinds of projection. He/she will be able to solve roofs with free gutters or built-up parts and display linear surfaces - developed and warped.
- Syllabus
- 1. Projections of points in Monge´s projection, oblique projection and rectangular axonometric, determination of these points in relation to projections. 2. Projections of lines and line segments in Monge´s projection, oblique projection and rectangular axonometric, determination of their position in relation to the projections, piercing points of lines, the real size of the line in Monge´s projection 3. Definition of the plane and the plane trace in Monge´s projection, oblique projection and rectangular axonometric, definition of their position in relation to projections, mutual position of planes, intersection of the planes. 4. Intersection of a line with a plane in Monge´s projection, oblique projection and rectangular axonometric, perpendicular to the plane and distance of the point from the plane in Monge´s projection. 5. Division of conics, ellipse - definition, point construction, osculating circle, tangent, banner construction, conjugate diameters,Rytz´s construction, parabola - definition, point construction, osculating circle, tangent,hyperbola - definition, point construction, osculating circle, tangent, asymptotes 6. Projections of planar shapes in Monte´s projection. 7. Projections of simple bodies at the base in general plane in Monge´s projection 8. Projections of planar shapes lying in some of projection planes and projections of simple solids at the base in the floor plan in oblique projection and rectangular axonometric 9. Division of surfaces, rotating surfaces and their tangent plane in Monge´s projection. Developable and undevelopable ruled surfaces 10. Hyperbolic paraboloid and one-piece hyperboloid, screw area and conoid. 11. Bases of dimensioned projection. 12. Topography, contour plan, intercalary contour, curve on topographic surface, solution of excavations and embankments - horizontal, straight rising and curved communication. 13. Theoretical solution of roofs with gutters and with built-up parts.
- Literature
- required literature
- ČERNÝ,J.,KOČANDRLOVÁ, M. Konstruktivní geometrie. Praha: Česká technika – nakladatelství ČVUT, 2005. 161 s. ISBN 80-01-03296-5; MAŇÁSKOVÁ,E. Sbírka úloh z deskriptivní geometrie. Praha: Prometheus 2008. 72 s. ISBN 978-80-7196-160-4
- recommended literature
- ČERNÝ,J.,KOČANDRLOVÁ, M. Konstruktivní geometrie. Praha: Česká technika – nakladatelství ČVUT, 2010. Dotisk 2. vydání. 262 s. ISBN 978-80-01-03089-9; BORECKÁ,J. a kol. Konstruktivní geometrie. VUT Brno, 2006. 146 s. IS
- Forms of Teaching
- Seminar
- Teaching Methods
- Group Teaching - Cooperation
- Student Workload
Activities Number of Hours of Study Workload Daily Study Combined Study Preparation for the Mid-term Test 13 13 Preparation for Seminars, Exercises, Tutorial 26 62 Preparation for the Final Test 13 13 Attendance on Seminars/Exercises/Tutorial/Excursion 52 16 Total: 104 104 - Assessment Methods and Assesment Rate
- Test – mid-term 50 %
Test – final 50 % - Exam conditions
- To write a midterm test and a final test. (The student has to get 60% and has one possibility of correction). The midterm test is in the first half of semester (about 6th or 7th teaching week), final test is at the end of semester. The prospective reparative test in the 1st week of the examination period.
- Language of instruction
- Czech
- Further comments (probably available only in Czech)
- The course can also be completed outside the examination period.
The course is taught annually.
- Enrolment Statistics (winter 2012, recent)
- Permalink: https://is.vstecb.cz/course/vste/winter2012/DEG_a