<?xml version="1.0" encoding="ISO-8859-1" standalone="yes" ?>
<document>
<title>Engineering Mathematics III</title>
<cid>FT15</cid>
<sapsubmodule>P242-0066</sapsubmodule>
<bkey>fz2</bkey>
<ctypes>
<hours>2</hours>
<type>V</type>
</ctypes>
<cp>2</cp>
<semester>3</semester>
<mandatory>yes</mandatory>
<language>German</language>
<exam>Written exam 60 min.</exam>
<curriculum>
<curriculum_entry>
<cid>FT15</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT15</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT15</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT15</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>MAB.3.4.MAT3</cid>
<branch>Mechanical and Process Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
</curriculum>
<workload>
30 class hours (= 22.5 clock hours) over a 15-week period.The total student study time is 60 hours (equivalent to 2 ECTS credits).There are therefore 37.5 hours available for class preparation and follow-up work and exam preparation.</workload>
<prerequisites>
<prerequisite>
<pfcid>FT01</pfcid>
<pftitle>Engineering Mathematics I</pftitle>
</prerequisite>
<prerequisite>
<pfcid>FT05</pfcid>
<pftitle>Engineering Mathematics II</pftitle>
</prerequisite>
</prerequisites>
<prerequisitesfor>
<prerequisitefor>
<pfcid>FT26.1</pfcid>
<pftitle>Project Work 1</pftitle>
</prerequisitefor>
<prerequisitefor>
<pfcid>FT30</pfcid>
<pftitle>Engineering Project in English</pftitle>
</prerequisitefor>
<prerequisitefor>
<pfcid>FT32</pfcid>
<pftitle>Bachelor Thesis</pftitle>
</prerequisitefor>
</prerequisitesfor>
<convenor>Prof. Dr. Marco Günther</convenor>
<convenor-person-key>mgu</convenor-person-key>
<lecturers>
<lecturer>Prof. Dr. Marco Günther</lecturer>
<lecturer-person-key>mgu</lecturer-person-key>
</lecturers>
<objectives>After successfully completing this module, students will:
- have mastered the basics of differential geometry and vector analysis
- be able to handle scalar and vector fields and apply different operators to them
- be able to calculate integrals over curves, surfaces and volumes
- understand and be able to apply the basic concepts of statistics
</objectives>
<content>- Differential geometry
- Vector analysis
- Scalar and vector fields in different coordinate systems,
- Divergence, rotation, potential,
- Line, surface, volume integrals
- Introduction to statistics
</content>
<media>Lecture, exercises</media>
<literature>- Papula, Mathematik für Ingenieure und Naturwissenschaftler, Band 2+3.
- Bartsch, Taschenbuch mathematischer Formeln.
Additional literature will be announced in the lecture.</literature>
<offered>
</offered>
<moduldb-query>Mon Mar 16 06:13:20 CET 2026, CKEY=miic, BKEY=fz2, CID=[?], LANGUAGE=en, DATE=16.03.2026</moduldb-query>
</document>
