Thermische Ausdehnung von Volumina
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Thermische Ausdehnung von Volumina
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The idea of containers is that you can merge for example exercises 1, 2 and 3 as sub-exercises a, b and c of one single exercise with a new title, the container title. If you add a container, the exercises are treated as sub-exercises with the sub-exercise layout you specified in the layout you choose when building the PDF.
The idea of containers is that you can merge for example exercises 1, 2 and 3 as sub-exercises a, b and c of one single exercise with a new title, the container title. If you add a container, the exercises are treated as sub-exercises with the sub-exercise layout you specified in the layout you choose when building the PDF.
Exercise Title | Attributes & Decoration | Points | Difficulty | |
---|---|---|---|---|
1 | Eisenkugel | 2 | 2 | |
2 | Kupferkugel erhitzen | 5 | 2 | |
3 | Zinkkugel abkühlen | 5 | 2 | |
4 | Erwärmter Zink-Kegel | 5 | 2 | |
5 | Abgekühlter Bronze-Kegel | 5 | 2 | |
6 | Erwärmter Bronze-Zylinder | 5 | 2 | |
7 | Radius von abgekühltem Titan-Zylinder | 5 | 2 |
Meta Information
Branches | Thermal Expansion |
Formula | \(V = \dfrac{4}{3}\pi r^3 \quad\) \(V = V_0 \cdot (1+ 3\alpha \cdot \Delta\vartheta) \quad\) |
Tags | temperatur, thermodynamik, volumen, wärmelehre |
Description | |
Owner | \(\TeX\)ercises |
Date of creation | 27. Januar 2021 17:48 |
Last modification | 2. Dezember 2022 11:26 |