If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band gap energy is : Planck’s constant h = 6.63 × 10–34 J.s. Speed of light c = 3 × 108 m/s
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
A: Given data- λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
A: Given data- λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
A: We have data- λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
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A: Given data- λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
A: We know that- λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
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Q: If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band…
A: We know that λ =400 nm c = 3 × 108 m/s h = 6.63 × 10–34 J.s
If a semiconductor photodiode can detect a photon with a maximum wavelength of 400nm, then its band gap energy is : Planck’s constant h = 6.63 × 10–34 J.s.
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