1) B 2) h = [latex]6,63 * 10^{-34} J*s[/latex] v = [latex]2*10^{14} Hz[/latex] 1eV = [latex]1,6*10^{-19}J[/latex] Ef = h * v Ef = [latex]1,326 * 10 ^{-19} J = 0,828 eV[/latex] 3) [latex]W = frac{h*c}{y} [/latex] y = λ - lambda (długość fali) [latex]W = frac{6,63 * 10^{-34}*3*10^{8}}{4*10^{-7}} [/latex] W = [latex]4,97 * 10^{-19} J[/latex] = 3,1 eV
[latex]1. B[/latex] [latex]2.\dane:\f = 2*10^{14} Hz = 2*10^{14} s^{-1}\h = 6,63*10^{-34}Js\1 eV = 1,6*10^{-19} J\szukane:\E_{f} = ?[/latex] [latex]E_{f} = h*f\\E_{f} = 6,63*10^{-34}Js*2*10^{14}s^{-1} =1,33*10^{-19} J\\E_{f} = frac{1,33*10^{-19}J}{1,6*10^{-19}frac{J}{eV}} = 0,83 eV[/latex] [latex]3.\dane:\lambda_{max} = 400 nm = 4*10^{-7} m\szukane:\W = ?[/latex] [latex]W = h*frac{c}{lambda}\\c = 3*10^{8}frac{m}{s}}\\W = 6,63*10^{-34}Js * frac{3*10frac{m}{s}}{4*10^{-7}m}=4,97*10^{-19} J\\W = frac{4,97*10^{-19}J}{1,6*10^{-19}frac{J}{eV}} = 3,1 eV[/latex]