Course syllabus KG - Constructive Geometry and Technical Drawing (FFWT - WS 2013/2014)

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Course code: KG
Course title in language of instruction: Konstruktivní geometrie a technické kreslení
Course title in Czech: Constructive Geometry and Technical Drawing
Course title in English: Constructive Geometry and Technical Drawing
Mode of completion and number of credits: Exam (5 credits)
(1 ECTS credit = 28 hours of workload)
Mode of delivery/Timetabled classes: full-time, 2/2 (hours of lectures per week / hours of seminars per week)
part-time, 16/0 (lectures per period / seminars per period)
Language of instruction: Czech
Level of course: bachelor
Semester: WS 2013/2014
Name of lecturer: Mgr. Jan Šafařík (examiner, instructor, lecturer)
Mgr. Miroslava Tkadlecová, Ph.D. (examiner, instructor, lecturer, supervisor)
Prerequisites: none
Aims of the course:
Understanding the basics of technical drawing and imaging techniques. The development of spatial imagination, as an important prerequisite for creative activity. Knowledge of basic constructions in different projections.
Course contents:
1.Basics of technical drawings according to ISO standards. (allowance 1/1)
2.Technical dimensioning. (Basic rules. Longitudinal listing. Dimensioning of diameters and radii. Height dimension. Stationing Dimension.) (allowance 1/0)
3.Principle and properties of projection. (Central projection. Parallel projection. Orthographic projection.) (allowance 1/0)
4.Spot height projection (Princip. Basic constructions.) (allowance 1/2)
5.Aplications of spot height projection (Topographic surface. Theoretical construction of roofs.) (allowance 4/4)
6.Monge projection. (Princip. Basic constructions. Projections of the circle. Projection of basic solids.) (allowance 2/3)
7.Axonometry. (Princip. Intersection method. Basic construction. Orthogonal axonometry. Solids. Intersections of solids with line. Cuts by plane.) (allowance 3/3)
8.Surfaces (allowance 1/1)
Learning outcomes and competences:
Generic competences:
-Ability to create new ideas (creativity)
-Ability to make decisions
-Ability to solve problems
-Capacity to learn
-General knowledge

Specific competences:
-Ability to display 3D objects in suitable projection
-Ability to solve problems in 3D space
-Developement of spatial imagination
-Increase of the level of graphic expression

Type of course unit: required
Year of study: Not applicable - the subject could be chosen at anytime during the course of the programme.
Work placement: There is no compulsory work placement in the course unit.
Recommended study modules: -
Learning activities and study load (hours of study load):
Type of teaching methodDaily attendanceCombined form
Direct teaching
     lecture28 h16 h
     practice28 h0 h
     preparation for exam35 h48 h
     preparation for regular assessment10 h28 h
     elaboration of reports33 h48 h
     elaboration and execution of projects6 h0 h
Total140 h140 h
Assessment methods:
Credit (submission of drawings and successfully pass the interim tests). The test includes a written part (3 complex examples for drawing) and oral (defense of written, theoretical questions). The oral part can be replaced by a semester of work or a project that is related to the industry practice or applications.
Recommended reading:
TypeAuthorTitlePublished inPublisherYearISBN
RQRÁDL, P.Konstruktivní geometrieBrnoMendelova univerzita v Brně2010978-80-7375-393-1
RQKUPČÁKOVÁ, M.Základní úlohy deskriptivní geometrie v modelechPrahaPrometheus2010978-80-7196-244-1
REPOMYKALOVÁ, E.Deskriptivní geometrie pro střední školyPrahaPROMETHEUS, spol. s r.o.2010978-80-7196-400-1


Last modification made by Ing. et Ing. Miroslav Cepl on 09/17/2014.

Type of output: