g≈10m/s^2 dv1=3m/s dv2=80m/s dv3=90km/h=25m/s dv4=300km/h = 250/3 m/s [latex]g= frac{dv}{t} [/latex] [latex]t= frac{dv}{g} [/latex] [latex]t_1= frac{3}{10} [/latex] [latex] t_1=0,3s [/latex] [latex]t_2= frac{80}{10} [/latex] [latex] t_2=8s [/latex] [latex]t_3= frac{25}{10} [/latex] [latex] t_3=2,5s [/latex] [latex]t_4= frac{250}{3*10} [/latex] [latex]t_4= 8frac{1}{3} s[/latex]
[latex]dane:\v_{o} = 0\v_1 = 3frac{m}{s}\v_2 = 80frac{m}{s}\v_3 = 90frac{km}{h} = 90*frac{1000m}{3600s} = 25frac{m}{s}\v_4 = 300frac{km}{h} = 300*frac{1000m}{3600s}\szukane:\t_1, t_2, t_3, t_4 = ?[/latex] [latex]v = g*t /:g\\t = frac{v}{g}\\t_1 = frac{v_1}{g} = frac{3frac{m}{s}}{10frac{m}{s^{2}}}\\t_1 = 0,3 s[/latex] [latex]t_2 = frac{v_2}{g} = frac{80frac{m}{s}}{10frac{m}{s^{2}}}\\t_2 = 8 s[/latex] [latex]t_3 = frac{v_3}{g} = frac{25frac{m}{s}}{10s}\\t = 2,5 s[/latex] [latex]t_4 = frac{v_4}{g} = frac{83,3frac{m}{s}}{10frac{m}{s^{2}}}\\t_4 approx 8,3 s[/latex]