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Title (created ) Formula
\(F_\bot = F_G\cdot \cos\alpha\)
Exercises # Owner Attributes Action
AG Hangabtriebskraft und Reibungskraft \(F_R = \mu F_\bot\)
\(F_\parallel = F_G \cdot \sin\alpha\)
\(F_\bot = F_G\cdot \cos\alpha\)
3 \(\TeX\)ercises
  • https://texercises.com/collection/hangabtriebskraft-und-reibungskraft/
AG Schiefe Ebene - Normal- und Hangabtriebskraft \(F_\parallel = F_G \cdot \sin\alpha\)
\(F_\bot = F_G\cdot \cos\alpha\)
2 \(\TeX\)ercises
  • https://texercises.com/collection/schiefe-ebene-normal-und-hangabtriebskraft/
AG Normalkraft und Federgesetz \(F = Ds\)
\(F_\bot = F_G\cdot \cos\alpha\)
2 \(\TeX\)ercises
  • https://texercises.com/collection/normalkraft-und-federgesetz/
AG Arbeit an schiefer Ebene \(W = Fs\)
\(F_\bot = F_G\cdot \cos\alpha\)
5 \(\TeX\)ercises
  • https://texercises.com/collection/arbeit-an-schiefer-ebene/
AG Schiefe Ebene Normalkraft und Gewichtskraft \(F = mg\)
\(F_\bot = F_G\cdot \cos\alpha\)
6 \(\TeX\)ercises
  • https://texercises.com/collection/schiefe-ebene-normalkraft-und-gewichtskraft/
TF Schiefe Ebene - rechtwinklig \(\cos\alpha = \dfrac{b}{c}\)
\(F = mg\)
\(F_\bot = F_G\cdot \cos\alpha\)
\(\sin\alpha = \dfrac{a}{c}\)
13 \(\TeX\)ercises
  • https://texercises.com/collection/schiefe-ebene-rechtwinklig/
AG Schiefe Ebene und Haftreibung \(F_R = \mu F_\bot\)
\(F_\bot = F_G\cdot \cos\alpha\)
4 \(\TeX\)ercises
  • https://texercises.com/collection/schiefe-ebene-und-haftreibung/