Course: Descriptive Geometry 2

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Course title Descriptive Geometry 2
Course code KMA/DEG2
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study not specified
Semester Summer
Number of ECTS credits 3
Language of instruction Czech
Status of course Compulsory, Compulsory-optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Tomiczková Světlana, RNDr. Ph.D.
Course content
Central projection. Linear perspective. Lighting Dimensioned projection Roofs Terrain modelling Introduction to geometric modelling (approximation, interpolation, splines)

Learning activities and teaching methods
Lecture supplemented with a discussion, Lecture with visual aids, Practicum
  • Preparation for an examination (30-60) - 30 hours per semester
  • Individual project (40) - 12 hours per semester
  • Contact hours - 39 hours per semester
prerequisite
Knowledge
In this course we suppose knowledge of the course KMA/DEG1.
use basic constructions in parallel projections, mainly Monge projection, axonometry
construct conic sections from specified elements
use central collineation and axial affinity
Skills
construct elementary solids in parallel projections, mainly Mongevo projection, axonometry
recognize the properties of objects in the above projections
construct an image of an polygon and a circle in axial affinity and central collineation
Competences
N/A
N/A
N/A
learning outcomes
Knowledge
describe the construction of elementary solids in central projection and linear perspective
basics of object lighting
roofing of buildings in dimensioned projections
Terrain modelling in a dimensioned projection
basic concepts of geometric modelling (approximation, interpolation, splines)
Skills
to construct elementary bodies in the central projection
construct solids and and their lighting
draws up floor plans for building roofs
will handle embankments and excavations in terrain defined by contour lines
calculations and sketches of interpolation and approximation curves
Competences
N/A
N/A
teaching methods
Knowledge
Lecture with visual aids
Lecture supplemented with a discussion
Practicum
Skills
Lecture supplemented with a discussion
Individual study
Competences
Interactive lecture
Task-based study method
assessment methods
Knowledge
Combined exam
Skills
Combined exam
Competences
Combined exam
Recommended literature
  • Ježek F. - Tomiczková S. Inženýrská geometrie - pomocný učební text. Plzeň, 2001.
  • Ježek, František; Míková, Marta,; Tomiczková, Světlana. Geometrie pro FST 1 : pomocný učební text : verze 4.0. Plzeň: Západočeská univerzita, 2006.
  • Kargerová, Marie. Deskriptivní geometrie pro technické školy vysoké, vyšší a střední. Ostrava: Montanex, 1997. ISBN 80-85780-68-2.
  • Piska, Rudolf. Deskriptivní geometrie. Praha: Státní nakladatelství technické literatury, 1966.
  • Piska, Rudolf; Medek, Václav. Deskriptivní geometrie. Vyd. 1. Praha: Státní nakladatelství technické literatury, 1966.
  • Urban, Alois. Deskriptivní geometrie II. 2. vyd. Praha: SNTL, 1979.
  • Urban, Alois. Deskriptivní geometrie. I.. Praha: SNTL, 1977.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester