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How much is the total energy of an electron in the first orbit of a hydrogen atom equal to?
1. total energy of electron in \(1\text{st}\) orbit of \(\mathrm{He}^{+}\)
2. total energy of electron in \(3\text{rd}\) orbit of \(\mathrm{He}^{+}\)
3. total energy of electron in \(2\text{nd}\) orbit of \(\mathrm{Li}^{++}\)
4. total energy of electron in \(3\text{rd}\) orbit of \(\mathrm{Li}^{++}\)

Subtopic:  Bohr's Model of Atom |
 74%
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Which of the following curves represents the variation in the number of \(\alpha \text-\)particles scattered \((N)\) with the scattering angle \((\theta)\) in Rutherford's \(\alpha \text-\)particle scattering experiment?

1. 2.
3. 4.
Subtopic:  Various Atomic Models |
 75%
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Which statement about the Rutherford model of the atom is not true?

1. There is a positively charged centre in an atom called the nucleus.
2. Nearly all the mass of an atom resides in the nucleus.
3. The size of the nucleus is the same as that of the atom.
4. Electrons occupy the space surrounding the nucleus.

Subtopic:  Various Atomic Models |
 90%
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In \(1911\), the physician Ernest Rutherford discovered that atoms have a tiny, dense nucleus by shooting positively charged particles at a very thin gold foil. A key physical property that led Rutherford to use gold was that it was:
1. electrically conducting
2. highly malleable
3. shiny
4. non-reactive

Subtopic:  Various Atomic Models |
 64%
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What is the ratio of the circumference of the first Bohr orbit for the electron in the hydrogen atom to the de-Broglie wavelength of electrons having the same velocity as the electron in the first Bohr orbit of the hydrogen atom?
1. \(1:1\)
2. \(1:2\)
3. \(1:4\)
4. \(2:1\)

Subtopic:  Bohr's Model of Atom |
 77%
From NCERT
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An electron revolves around a nucleus of charge \(Ze\). In order to excite the electron from the state \(n=3\) to \(n=4\), the energy required is \(66.0 ~\text{eV}\). The value of \(Z\) will be:
1. \(25\)
2. \(10\)
3. \(4\)
4. \(5\)

Subtopic:  Bohr's Model of Atom |
 66%
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The Rutherford \(α -\)particle experiment shows that most of the \(α -\)particles pass through almost unscattered while some are scattered through large angles. What information does it give about the structure of the atom?

1. The atom is hollow.
2. The whole mass of the atom is concentrated in a small center called the nucleus.
3. The nucleus is positively charged.
4. All of the above
Subtopic:  Various Atomic Models |
 86%
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What is the ratio of the speed of an electron in the first orbit of an \(\mathrm{H}\text-\)atom to the speed of light?

1. \(\dfrac{1}{137}\) 2. \(137\)
3. \(\dfrac{1}{83}\) 4. \(\dfrac{1}{47}\)
Subtopic:  Bohr's Model of Atom |
 83%
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Let \(f_1\) be the maximum frequency of the Lyman series, \(f_2\) be the frequency of the first line of the Lyman series, and \(f_3\) be the frequency of the series limit of the Balmer series, then which of the following is correct?
1. \(f_1-f_2=f_3\)
2. \(f_2-f_1=f_3\)
3. \(f_1+f_2=f_3\)
4. \(2f_1 = f_2 + f_3\)

Subtopic:  Spectral Series |
 64%
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In an atom, if the transition from \(n = 4\) to \(n=3\) gives ultraviolet radiation, then to obtain infrared radiation, the transition should be:
1. \(5\rightarrow 4\) 2. \(3\rightarrow 2\)
3. \(2\rightarrow 1\) 4. \(3\rightarrow 1\)
Subtopic:  Spectral Series |
 79%
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