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Statics und Mechanics of Materials - Detailansicht

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Grunddaten
Veranstaltungsart Vorlesung Langtext
Veranstaltungsnummer 10524 Kurztext
Semester WiSe 2023/24 SWS 4
Erwartete Teilnehmer/-innen Max. Teilnehmer/-innen
Rhythmus Jedes 2. Semester Studienjahr
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Sprache Englisch
Belegungsfrist Hauptbelegungszeitraum 18.09.2023 - 13.10.2023

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Lehrperson Status Lernziele fällt aus am Max. Teilnehmer/-innen
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Do. 11:30 bis 13:00 woch von 05.10.2023  Gebäude L - L 028       16.11.2023: Cancellation due to illness
23.11.2023: Cancellation (Replacement by asynchronous teaching)
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Di. 08:00 bis 09:30 woch von 10.10.2023  Gebäude C - C109       21.11.2023: Cancellation
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Zugeordnete Person
Zugeordnete Person Zuständigkeit
Winkler, Michael, Professor verantwortlich
Laut SPO für
Abschluss Studiengang Semester Kategorie ECTS
Bachelor Studienrichtung MB-International Project Engineeri 2 - 2 Pflichtfach 5
Bachelor Energie- und Umwelttechnik 3 - 3 Pflichtfach 5
Zuordnung zu Einrichtungen
Bachelorstudiengang Energie- und Umwelttechnik
Inhalt
Inhalt

Statics:

- Introduction

- Basic concepts

- Systems of forces

- Systems of rigid bodies

- Center of forces and centroids

- Stress resultants


Mechanics of Materials:

- Fundamentals of mechanics of materials

- Tension and compression

- Bending

- Transverse shear

- Torsion

- Stress State, combination of loadings and strain state

- Buckling

Literatur

- Gross, D.; Hauger, W.; Schröder, J.; Wall, W.A.; Rajapakse, N.: Engineering Mechanics 1 – Statics; Springer; 2013.

- Gross, D.; Hauger, W.; Schröder, J.; Wall, W.A.;  Bonet, J.: Engineering Mechanics 2 – Mechanics of Materials; Springer; 2011.

- Gross, D.; Ehlers, W.; Wriggers, P.; Schröder, J.; Müller, R.: Statics – Formulas and Problems. Springer; 2017.

- Gross, D.; Ehlers, W.; Wriggers, P.; Schröder, J.; Müller, R.: Mechanics of Materials – Formulas and Problems. Springer; 2017.

- Mittelstedt, C.: Engineering Mechanics 2: Strength of Materials. Springer; 2023.

Lernziele

The graduates can describe the basic principles of statics and the basic equations of mechanics of materials (kinematical relations, Hooke's law, equilibrium). The graduates can explain the different types of loading and the according theoretical approaches.

Graduates can draw free-body diagrams and use these in order to calculate support reactions and calculate centroids and stress resultants (internal forces and moments).
Graduates can use the theoretical approaches for the different types of loading in order to calculate stresses and deformations.
They can determine the load-bearing capacity of a structure and dimension parts.

Graduates can solve mechanical problems in the fields of statics and mechanics of materials on their own. Especially, they can adequatly justify the procedure for the solution. The acquirement of the communication competence is supported by solving some of the problems in the lecture time and by
working in learning groups.

Graduates acquire a high degree of professional working by conducting analytical calculations. Especially, the conscientious and correct execution is of high importance. Such precise working is also important in an industrial environment. They acquire the capability to manage the learning process on their own (time planning, self-study). This is an important competence for the job.

Voraussetzungen

Mathematik 1 und 2 (EUT); Analysis 1 (IPE)

Leistungsnachweis

Portfolioprüfung (PF) with 10% Onlinetests and 90% exam (90 minutes)

 

Allowed materials (written exam):

-Distributed formulary (2 DIN A4 sheets; printed on both sides; landscape format without scaling; additional notes are allowed); You have to bring the formulary to the exam.

-1 DIN A4 sheet (written on both sides) hand-written notes


Strukturbaum
Keine Einordnung ins Vorlesungsverzeichnis vorhanden. Veranstaltung ist aus dem Semester WiSe 2023/24 , Aktuelles Semester: SoSe 2024