b)
s(t) = 1/2 * a * t^2 + v * t = 1/2 * (10 m/s²) * t^2 + (50 m/s) * t = 30 m --> t = 0.5678 s
v(0.5678) = a * t + v = (10 m/s²) * (0.5678 s) + (50 m/s) = 55.68 m/s
c)
v(2) = (√2/2 m/s³)·t^2 + v = (√2/2 m/s³)·(2 s)^2 + (13.9 m/s) = 16.73 m/s
Hier bin ich mir nicht sicher ob das so richtig ist.
d)
F1 = m·v^2 / r = (70 kg)·(19.4 m/s)^2 / (25 m) = 1054 N
F2 = m·v^2 / r = (70 kg)·(19.4 m/s)^2 / (15 m) = 1756 N
(1756 N) - (1054 N) = 702 N
(1756 N) / (1054 N) - 1 = 0.6660 = 66.60%