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got speed as 310m/s but wait what was time setting?? do u remember??mimi5959 said:they said that from the maximum displacement to the minimum dislplacement (i.e from the antinode to the node) the distance covered is 6.7 cm... 0.067m
hence the wavelength is (2 x 0.067).... frequency is 2500 Hz... so the speed will be 335 m.s-1
aand yes the answer for the first part of Kirchoff's Law is I2 = I1 + I3
mimi5959 said:they said that from the maximum displacement to the minimum dislplacement (i.e from the antinode to the node) the distance covered is 6.7 cm... 0.067m
hence the wavelength is (2 x 0.067).... frequency is 2500 Hz... so the speed will be 335 m.s-1
aand yes the answer for the first part of Kirchoff's Law is I2 = I1 + I3
shressubha said:got speed as 310m/s but wait what was time setting?? do u remember??mimi5959 said:they said that from the maximum displacement to the minimum dislplacement (i.e from the antinode to the node) the distance covered is 6.7 cm... 0.067m
hence the wavelength is (2 x 0.067).... frequency is 2500 Hz... so the speed will be 335 m.s-1
aand yes the answer for the first part of Kirchoff's Law is I2 = I1 + I3
ying27kia said:mimi5959 said:they said that from the maximum displacement to the minimum dislplacement (i.e from the antinode to the node) the distance covered is 6.7 cm... 0.067m
hence the wavelength is (2 x 0.067).... frequency is 2500 Hz... so the speed will be 335 m.s-1
aand yes the answer for the first part of Kirchoff's Law is I2 = I1 + I3
they said it's from maximum-minimum-maximum. So 6.7cm is one wavelength
really confused
knightrider07 said:wat were the graphs??
and how does alpha particle lose energy?
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