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Ultra violet light of wave length 2271 armstrong from a source irradiated a photo-cell which is made of molybdenum metal.If the stopping potential is 1.3 volt, calculate the work function of the metal.How would the photo cell respond to a high intensity (10^5 Wm^-2) red light of wavelength 6328 armstrong produced by He-Me laser?
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Ultra violet light of wave length 2271 armstrong from a source irradiated a photo-cell which is made of molybdenum metal.If the stopping potential is 1.3 volt, calculate the work function of the metal.How would the photo cell respond to a high intensity (10^5 Wm^-2) red light of wavelength 6328 armstrong produced by He-Me laser?
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Ultra violet light of wave length 2271 armstrong from a source irradiated a photo-cell which is made of molybdenum metal.If the stopping potential is 1.3 volt, calculate the work function of the metal.How would the photo cell respond to a high intensity (10^5 Wm^-2) red light of wavelength 6328 armstrong produced by He-Me laser? for Class 12 2024 is part of Class 12 preparation. The Question and answers have been prepared according to the Class 12 exam syllabus. Information about Ultra violet light of wave length 2271 armstrong from a source irradiated a photo-cell which is made of molybdenum metal.If the stopping potential is 1.3 volt, calculate the work function of the metal.How would the photo cell respond to a high intensity (10^5 Wm^-2) red light of wavelength 6328 armstrong produced by He-Me laser? covers all topics & solutions for Class 12 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Ultra violet light of wave length 2271 armstrong from a source irradiated a photo-cell which is made of molybdenum metal.If the stopping potential is 1.3 volt, calculate the work function of the metal.How would the photo cell respond to a high intensity (10^5 Wm^-2) red light of wavelength 6328 armstrong produced by He-Me laser?.
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