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[" For any H like system,the ratio of "],[" velocities of I,II & III orbit i.e.,"V_(1):V_(2)],[:V_(3)" will be "],[hline" 1) "1:2:3],[" 2"1:1/2:1/3],[" 3"3:2:1]

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For any H like system, the ratio of velocities of electron in I, II & III orbit i.e., V_(1):V_(2):V_(3) will be:

For any H like system, the ratio of velocities of electron in I, II & III orbit e.e., V_(1):V_(2):V_(3) will be:

For any H like system, the ratio of velocities of electron in I, II & III orbit e.e., V_(1):V_(2):V_(3) will be:

For the given conductor the drift speed of electrons at cross section I, II and III are v_(d_1) , v_(d_2) , " and v_(d_3) , then

Three block 1, 2 and 3 are arranged as shown in the figure. The velocities of the blockes v_(1) , v_(2) and v_(3) are shown in the figure. What is the relationship between v_(1) , v_(2) and v_(3) ?

Cut off potentials for a metal in photoelectric effect for light of wavelength lambda_(1), lambda_(2) and lambda_(3) is found to be V_(1), V_(2) and V_(3) volts if V_(1), V_(2) and V_(3) are in Arithmetic Progression and lambda_(1), lambda_(2) and lambda_(3) will be :

Give the magnitude and polarity of the following voltages in the circuit of figure: i. V_1 ii. V_2 iii. V_3 iv. V_(3-2) v. V_(1-2) V_(1-3)

Give the magnitude and polarity of the following voltages in the circuit of figure: i. V_1 ii. V_2 iii. V_3 iv. V_(3-2) v. V_(1-2) V_(1-3)