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Title (created ) Formula
\(s = \dfrac{v^2-v_0^2}{2a}\)
Exercises # Owner Attributes Action
AG Kinematik - 2. und 2. Formel \(s = \dfrac{v^2-v_0^2}{2a}\) 7 \(\TeX\)ercises
  • https://texercises.com/collection/kinematik-2-und-2-formel/
AG Kinematik - 1. und 3. Formel \(s = \dfrac{1}{2}at^2+v_0 t\)
\(s = \dfrac{v^2-v_0^2}{2a}\)
3 \(\TeX\)ercises
  • https://texercises.com/collection/kinematik-1-und-3-formel/
AG Impuls und 3. Formel \(s = \dfrac{v^2-v_0^2}{2a}\)
\(p = mv\)
4 \(\TeX\)ercises
  • https://texercises.com/collection/impuls-und-3-formel/
AG Reaktionszeit \(v = v_0 + at\)
\(s = \dfrac{1}{2}at^2+v_0 t\)
\(s = \dfrac{v^2-v_0^2}{2a}\)
\(s = vt\)
5 \(\TeX\)ercises
  • https://texercises.com/collection/reaktionszeit/
TF Freier Fall 3. Formel \(s = \dfrac{v^2-v_0^2}{2a}\) 27 \(\TeX\)ercises
  • https://texercises.com/collection/freier-fall-3-formel/
TF Beschleunigung 3. Formel \(s = \dfrac{v^2-v_0^2}{2a}\) 48 \(\TeX\)ercises
  • https://texercises.com/collection/beschleunigung-3-formel/
AG Kinematik - 2. und 3. Formel \(v = v_0 + at\)
\(s = \dfrac{v^2-v_0^2}{2a}\)
6 \(\TeX\)ercises
  • https://texercises.com/collection/kinematik-2-und-3-formel/
AG Railgun \(s = \dfrac{v^2-v_0^2}{2a}\)
\(F = \ell I B\)
\(F = ma\)
6 \(\TeX\)ercises
  • https://texercises.com/collection/railgun/
AG Turmspringer \(s = \dfrac{v^2-v_0^2}{2a}\)
\(F = ma\)
11 \(\TeX\)ercises
  • https://texercises.com/collection/turmspringer/
AG Curling \(s = \dfrac{v^2-v_0^2}{2a}\)
\(F = ma\)
\(F_R = \mu F_\bot\)
5 \(\TeX\)ercises
  • https://texercises.com/collection/curling/
AG Bremsendes Auto \(v = v_0 + at\)
\(s = \dfrac{1}{2}at^2+v_0 t\)
\(s = \dfrac{v^2-v_0^2}{2a}\)
6 \(\TeX\)ercises
  • https://texercises.com/collection/bremsendes-auto/
AG Düsenjäger \(v = v_0 + at\)
\(s = \dfrac{v^2-v_0^2}{2a}\)
3 \(\TeX\)ercises
  • https://texercises.com/collection/dusenjager/