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 · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength

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Page 1:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 2:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 3:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 4:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 5:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 6:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 7:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 8:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 9:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 10:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 11:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 12:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 13:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 14:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength
Page 15:  · S SCRIBD Sol. Ans. Sol. 5x10 10-7 m = 12375 Energy of photon - 2.475eV 5000 2.475eV -2eV stopping potential = Wavelength of the first line of Balmer series is 600 nm. The wavelength