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Computer Graphics

Some basic information about the module

Cycle of education: 2019/2020

The name of the faculty organization unit: The faculty Mathematics and Applied Physics

The name of the field of study: Medical Engineering

The area of study: technical sciences

The profile of studing:

The level of study: first degree study

Type of study: full time

discipline specialities :

The degree after graduating from university: inżynier

The name of the module department : Department of Physics

The code of the module: 9458

The module status: mandatory for teaching programme with the posibility of choice

The position in the studies teaching programme: sem: 5 / W15 L30 / 3 ECTS / Z

The language of the lecture: Polish

The name of the coordinator: Czesław Jasiukiewicz, DSc, PhD

The aim of studying and bibliography

The main aim of study: Introduction to the basics of the computer graphics.

The general information about the module: With OpenGl as an example in the module will be introduced the basic structures of the graphic libraries. The Aim of the course is to develope an orientation in the technical capabilities of the computer graphic.

Teaching materials: Materiały do zajęć w wersji elektronicznej umieszczone na stronie wskazanej przez wykładowcę

Bibliography required to complete the module
Bibliography used during lectures
1 R.S. Wright, M. Sweet OpenGL. Księga eksperta Gliwice : Helion, . 2011
Bibliography used during classes/laboratories/others
1 Muhammad Mobeen Movania. OpenGL : receptury dla programisty Gliwice : Helion, . 2015.
Bibliography to self-study
1 Ganczarski, Janusz. OpenGL w praktyce Legionowo : Wydaw.BTC,. 2008

Basic requirements in category knowledge/skills/social competences

Formal requirements:

Basic requirements in category knowledge: Basic knowledge of C language

Basic requirements in category skills: Ability to use the C compiler

Basic requirements in category social competences: Knowing the Rules of the computer lab.

Module outcomes

MEK The student who completed the module Types of classes / teaching methods leading to achieving a given outcome of teaching Methods of verifying every mentioned outcome of teaching Relationships with KEK Relationships with PRK
01 Stdent knows the imaging algorithms. lecture, laboratory Credit part practical, performance monitoring, project report K_W09++
K_U09+
P6S_UO
P6S_UU
P6S_WG
02 Student is able to collaborate on a team project. team project observation of performance, presentation of the project, project report K_K01++
K_K04++
P6S_KO
P6S_UO
P6S_UU
03 Student is able to implement simple algorithms to create an image on a computer screen using the OpenGL library. laboratory Credit part practical, performance monitoring, project report K_W09++
K_K05++
P6S_KK
P6S_KO
P6S_UO
P6S_WG
04 Student can create simple objects using the selected program to create 3D graphics laboratory observation of performance, presentation of the achievements (portfolio) K_W09++
K_K05++
P6S_KK
P6S_KO
P6S_UO
P6S_WG

Attention: Depending on the epidemic situation, verification of the achieved learning outcomes specified in the study program, in particular credits and examinations at the end of specific classes, can be implemented remotely (real-time meetings).

The syllabus of the module

Sem. TK The content realized in MEK
5 TK01 Graphic Library Utility Toolkit (GLUT) W01, L01-L02 MEK01
5 TK02 Geometry and projection in OpenGl W02, L03 MEK01 MEK04
5 TK03 Lights and lighting W03, L04 MEK01
5 TK04 Program code optimalization W04, L05 MEK01 MEK04
5 TK05 Clolor blending W05, L06 MEK01
5 TK06 Bitmaps and images. W06, L07 MEK01
5 TK07 Textures and metods of texturing. W07-W08, L08-L09 MEK01 MEK03 MEK04
5 TK08 Buffers in OpenGl and its applications. W09, L10 MEK01 MEK03
5 TK09 Interactive graphics - selection and feedback. W10, L11-L12 MEK01 MEK03
5 TK10 Curves and surfaces in parametric representation. W11, L13 MEK01 MEK03
5 TK11 Animation methods W12-W15, L14-L15 MEK01 MEK02 MEK04

The student's effort

The type of classes The work before classes The participation in classes The work after classes
Lecture (sem. 5) contact hours: 15.00 hours/sem.
Laboratory (sem. 5) contact hours: 30.00 hours/sem.
Advice (sem. 5)
Credit (sem. 5)

The way of giving the component module grades and the final grade

The type of classes The way of giving the final grade
Lecture
Laboratory
The final grade 1/4 assessment of the tests at lectures + 3/4 assessment of the laboratory tasks

Sample problems

Required during the exam/when receiving the credit
(-)

Realized during classes/laboratories/projects
(-)

Others
(-)

Can a student use any teaching aids during the exam/when receiving the credit : yes

Available materials : Recommended materials and own notes.

The contents of the module are associated with the research profile: no