NEET Practice Questions (MCQs) with Answers & Solutions

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The frequency of light wave of wavelength $ 50000 A ^\circ $ is

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Explanation

The frequency $\nu$ of light can be calculated using the equation $\nu = \frac{c}{\lambda}$, where $c$ is the speed of light (approximately $3 \times 10^8$ m/s) and $\lambda$ is the wavelength. For a wavelength of $50000 \text{ Ã…}$, which is $50000 \times 10^{-10}$ meters, the frequency is $\nu = \frac{3 \times 10^8}{50000 \times 10^{-10}} = 6 \times 10^{14}$ Hz.

Unit of $\mu_0 C $ is same as that of

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If the direction of magnetic field $ \vec B $ at some instant is along +ve Z direction and the electromagnetic wave is propagating along +ve X direction, then the direction of electric field $ \vec E $ at that instant is_________

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Explanation

In an electromagnetic wave, the electric field ( \vec{E} ), magnetic field ( \vec{B} ), and the direction of wave propagation ( \vec{k} ) are all perpendicular to each other and follow the right-hand rule. If the magnetic field is along the +ve Z direction ( \vec{B} \uparrow \hat{z} ) and the wave is propagating along the +ve X direction ( \vec{k} \uparrow \hat{x} ), then the electric field ( \vec{E} ) must be along the +ve Y direction ( \vec{E} \uparrow \hat{y} ) to satisfy the right-hand rule.

Relation between amplitudes of electric and Magnetic field is

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Explanation

The relationship between the amplitudes of the electric field ( E_0 ) and the magnetic field ( B_0 ) in an electromagnetic wave is given by E_0 = c B_0 , where c is the speed of light in a vacuum. This relationship comes from the fact that the magnitudes of the electric and magnetic fields are related by the speed of light: E = cB .

If a source is transmitting electromagnetic wave of frequency $ 8 \times 10^6 Hz $ , then the wavelength of the electromagnetic waves transmitted from the source will be______

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The velocity of light in vacuum can be changed by changing

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Explanation

The velocity of light in vacuum, often denoted as 'c', is a fundamental constant and does not change with frequency, wavelength, or amplitude. It is approximately 3 x 10^8 meters per second and remains consistent regardless of these factors. Therefore, the correct answer is 'none of these'.

An electromagnetic wave going through vaccum is described by $ E =E_0 sin (kx - \omega t ) $ then $ B= B_0 sin (kx -\omega t ) $ then

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If the wavelength of light is 4000 $ A ^ \circ $ then the number of waves in 1mm length will

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The SI unit of displacement current is

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Explanation

The SI unit of displacement current is the Ampere (A). Displacement current is a quantity appearing in Maxwell's equations and is defined in terms of the rate of change of the electric field. Since it has the same units as regular current, the unit is Ampere.

The electromagnetic waves do not transport

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Explanation

Electromagnetic waves transport energy, momentum, and information, but they do not transport charge. Charge is a property of particles, not waves. Therefore, the correct option is 'Charge'.

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