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Title (created ) Formula
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
Exercises # Owner Attributes Action
AG Zerfallsgesetz und molare Masse \(m = nM\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
10 \(\TeX\)ercises
  • https://texercises.com/collection/zerfallsgesetz-und-molare-masse/
AG Die Zerfallenen und molare Masse \(m = nM\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
1 \(\TeX\)ercises
  • https://texercises.com/collection/die-zerfallenen-und-molare-masse/
AG Zerfallsgesetz mit Prozent \(\eta = \dfrac{a}{A}\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
\(N_t = N_0 \cdot2^{-\frac{t}{T}}\)
5 \(\TeX\)ercises
  • https://texercises.com/collection/zerfallsgesetz-mit-prozent/
AG Ivy Mike \(A = \lambda \cdot N\)
\(T = \dfrac{\ln 2}{\lambda}\)
\(m = nM\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
2 \(\TeX\)ercises
  • https://texercises.com/collection/ivy-mike/
TF Zerfallsgesetz \(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
\(N_t = N_0 \cdot2^{-\frac{t}{T}}\)
16 \(\TeX\)ercises
  • https://texercises.com/collection/zerfallsgesetz-2/
AG Radioactivity taken up by cells \(\eta = \dfrac{a}{A}\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
4 \(\TeX\)ercises
  • https://texercises.com/collection/radioactivity-taken-up-by-cells/
AG Zerfallsgleichung \(m = nM\)
\(N_t = N_0 \cdot \text{e}^{-\lambda t}\)
7 \(\TeX\)ercises
  • https://texercises.com/collection/zerfallsgleichung/
AG Höhle von Lascaux \(N_t = N_0 \cdot \text{e}^{-\lambda t}\) 3 \(\TeX\)ercises
  • https://texercises.com/collection/hohle-von-lascaux/