Given below are two statements:
Statement I:  The Balmer spectral line for H atom with lowest energy is located at \(\dfrac 5{36}\mathrm{ R_H~ cm^{-1}}\) (\(\mathrm{R_H}\) = Rydberg constant) 
Statement II:  When the temperature of blackbody increases, the maxima of the curve (intensity versus wavelength) shifts to shorter wavelength.
 
In the light of the above statements, choose the correct answer from the options given below: 
1. Statement I is True but Statement II is False 
2. Statement I is False  but Statement II is True 
3. Both Statement I and Statement II are True 
4. Both Statement I and Statement II are False
Subtopic:  Bohr's Theory | Planck's Theory |
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Calculate the energy in corresponding to light of wavelength 45 nm:
(Planck's constant h = 6.63 × 10–34 Js: speed of light c = 3 × 108 ms–1)
1. 6.67 x 1015 J
2. 6.67 x 1011 J
3. 4.42 x 10-15 J
4. 4.42 x 10-18 J

Subtopic:  Planck's Theory |
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The value of Planck's constant is 6.63 × 10–34 J s. The velocity of light is 3.0 × 108 m s–1. The closest value to the wavelength in nanometers of a quantum of light with a frequency of 8×1015 s-1 is:

1. 2×10-25

2. 5×10-18

3. 4×101

4. 3×107

Subtopic:  Planck's Theory |
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If the energy value is E = 3.03 × 10–19 Joules, (h = 6.6×10–34 J x sec., C = 3×108 m/sec), then the value of the corresponding wavelength is:

1. 65.3 nm 2. 6.53 nm
3. 3.4 nm 4. 653 nm
Subtopic:  Planck's Theory |
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