Physics MCQs for NEET — Practice Questions with Answers

Practice free Physics NEET multiple-choice questions online with instant answers and detailed explanations. No login required.

All Physics Chemistry Botany Zoology
Register free to filter questions

Bohr's model is NOT applicable to which of the following atomic species?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text explicitly states: 'Bohr’s model is applicable only to hydrogenic (single electron) atoms. It cannot be extended to even two electron atoms such as helium.' $H$, $He^+$, and $Li^{2+}$ are all hydrogenic species (single electron), while $He$ has two electrons.

One of the fundamental limitations of Bohr's model was its inability to account for the formation of molecules by chemical bonds. This implies a lack of understanding regarding:

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text mentions: 'It could not explain the ability of atoms to form molecules by chemical bonds.' This directly relates to how atoms interact and bond, which involves interatomic forces and the behavior of valence electrons.

How does Bohr's model contradict the Heisenberg Uncertainty Principle?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'An orbit is a clearly defined path and this path can completely be defined only if both the exact position and the exact velocity of the electron at the same time are known. This is not possible according to the Heisenberg uncertainty principle.' Therefore, Bohr's model, by defining fixed orbits, contradicts the uncertainty principle.

Bohr's model is described as 'semiclassical' because it incorporates:

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'Bohr’s semiclassical model based on some aspects of classical physics and some aspects of modern physics also does not provide a true picture of the simplest hydrogenic atoms.'

When applying Bohr's model to multi-electron atoms, why do electron-electron interactions pose a significant problem?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text mentions: 'the electron-electron electric force interaction is comparable in magnitude to the electron-nucleus electrical force, because the charges and distances are of the same order of magnitude. This is the reason why the Bohr’s model with its planet-like electron is not applicable to many electron atoms.'

Bohr's model, despite its successes for hydrogen, failed to explain the relative intensities of spectral lines. What does this indicate?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text notes: 'While the Bohr’s model correctly predicts the frequencies of the light emitted by hydrogenic atoms, the model is unable to explain the relative intensities of the frequencies in the spectrum... Experimental observations depict that some transitions are more favoured than others.' The varying intensities imply varying probabilities of transition.

The advent of quantum mechanics was necessary to address the limitations of Bohr's model because it could:

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'In view of these inherent weaknesses in the Bohr model, there was no point in extending Bohr model to other atoms. In fact an insight into the structure of the atom was needed which could account for wave-particle duality of matter and be consistent with Heisenberg uncertainty principle. This came with the advent of quantum mechanics.'

Which of the following is a direct consequence of ignoring the wave character of the electron in Bohr's theory?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'The wave character of the electron is ignored in Bohr’s theory. An orbit is a clearly defined path and this path can completely be defined only if both the exact position and the exact velocity of the electron at the same time are known. This is not possible according to the Heisenberg uncertainty principle.' Thus, ignoring wave character leads to a conflict with the uncertainty principle by assuming a well-defined orbit.

Bohr's model includes only one quantum number ($n$). In contrast, quantum mechanics describes a quantum state using how many quantum numbers?

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'Bohr’s model include only one quantum number n. The new theory called quantum mechanics supportes Bohr’s postulate. However in quantum mechanics (more generally accepted), a given energy level may not correspond to just one quantum state. For example, a state is characterised by four quantum numbers (n, l, m, and s)...'

The quantum mechanical model provides a 'more complete picture of the atomic structure' for complex atoms primarily due to its incorporation of:

You've reached today's free limit of 20 questions. Log in to keep practising for free.
Explanation

The NCERT text states: 'For complex atoms we have to use a new and radical theory based on Quantum Mechanics, which provides a more complete picture of the atomic structure.' Earlier, it is mentioned that quantum mechanics 'takes into account this dual behaviour of matter especially for sub-atomic particles and the uncertainty principle.'

Ready to ace NEET?

Free access · No credit card required

Frequently Asked Questions

Yes. You can attempt every Physics question on this page for free without logging in, and check the correct answer with a detailed explanation instantly.

No account is required to attempt questions and view answers. A free account adds bookmarks, personal notes, and progress tracking.

The bank mixes NEET previous year questions (PYQs) with practice questions, each tagged with its exam appearances where applicable.