Which input \((A,B)-\)output \((Y)\) combination correctly represents the given logic circuit?
                 
1. \(A=1,B=1,Y=1\)
2. \(A=0,B=1,Y=1\)
3. \(A=1,B=0,Y=0\)
4. \(A=0,B=0,Y=1\)
Subtopic:  Logic gates |
 57%
Level 3: 35%-60%
NEET - 2024
Hints

A rocket is fired vertically upward with a speed of \(\dfrac{v_e}{\sqrt2}\) from the Earth's surface, where \(v_e\) is escape velocity on the surface of Earth. The distance from the surface of Earth upto which the rocket can go before returning to the Earth is:
(given, the radius of Earth \(=6400~\text{km}\) )
1. \(1600~\text{km}\)
2. \(3200~\text{km}\)
3. \(6400~\text{km}\)
4. \(12800~\text{km}\)
Subtopic:  Escape velocity |
 64%
Level 2: 60%+
NEET - 2024
Hints

An ideal gas at \(0^{\circ}\text{C}\) and atmospheric pressure \(P\) has volume \(V.\) The percentage increase in its temperature needed to expand it to \(3V\) at constant pressure is:
1. \(100\%\) 2. \(200\%\)
3. \(300\%\) 4. \(50\%\)
Subtopic:  Ideal Gas Equation |
 69%
Level 2: 60%+
NEET - 2024
Hints

advertisementadvertisement

A particle of mass \(m\) and charge \(q\) is placed in a uniform electric field \(E\) at \(t=0~\text s.\) The kinetic energy of the particle after time \(t\) is:
1. \(\dfrac{Eqm}{t}\) 2. \(\dfrac{E^2q^2t^2}{2m}\)
3. \(\dfrac{2E^2t^2}{qm}\) 4. \(\dfrac{Eq^2m}{2t^2}\)
Subtopic:  Electric Field |
 83%
Level 1: 80%+
NEET - 2024
Hints

There are two heaters \(A\) and \(B.\) The heater \(A\) takes time \(t_1\) to boil a given quantity of water, while \(B\) takes time \(t_2\) to boil the same quantity of water across the same supply voltage. If the two heaters are connected in series, the time taken by this combination to boil the same quantity of water will be:
1. \(\large\dfrac{t_1t_2}{t_1+t_2}\) 2. \(t_1+t_2\)
3. \({\large\dfrac12}(t_1+t_2)\) 4. \(\large\dfrac{t_1t_2}{2(t_1+t_2)}\)
Subtopic:  Heating Effects of Current |
 59%
Level 3: 35%-60%
NEET - 2024
Hints

If \(T_1,T_2,T_3,T_4\) and \(T_5\) represent the tension in the string of a simple pendulum when the bob is at the left extreme, right extreme, mean, any intermediate left and any intermediate right positions, respectively. Then, which of the following relations are correct?
(A) \(T_1=T_2\) (B) \(T_3>T_2\)
(C) \(T_4>T_3\) (D) \(T_3=T_4\)
(E) \(T_5>T_2\)
Choose the most appropriate answer from the options given below:
1. (A), (B) and (C) only 2. (B), (C) and (D) only
3. (A), (B) and (E) only 4. (C), (D) and (E) only
Subtopic:  Angular SHM |
 66%
Level 2: 60%+
NEET - 2024
Hints

advertisementadvertisement

Arrange the following in the order of their resistance.
A. (\(0\) to \(1~\text A\)) ranged ammeter.
B. (\(0\) to \(100~\text {mA}\)) ranged milli-ammeter.
C. (\(0\) to \(500~\mu\text A\)) ranged micro-ammeter.
D. (\(0\) to \(100~\text V\)) ranged voltmeter.
 
Choose the correct answer from the options given below:
1. \(\mathrm{A > B > C > D}\) 2. \(\mathrm{D > C > B > A}\)
3. \(\mathrm{D > A > B > C}\) 4. \(\mathrm{C > B > A > D}\)
Subtopic:  Derivation of Ohm's Law |
 53%
Level 3: 35%-60%
NEET - 2024
Hints

The object \(A\) has half the kinetic energy as that of the object \(B.\) The object \(B\) has half the mass as that of the object \(A.\) The object \(A\) speeds up by \(1~\text{ms}^{-1}\) and then has the same kinetic energy as that of the object \(B.\) The initial speed of the object \(A\) is:
(Take \(\sqrt2\cong1.4\))
1. \(0.5~\text{ms}^{-1}\) 2. \(1~\text{ms}^{-1}\)
3. \(2.5~\text{ms}^{-1}\) 4. \(4.8~\text{ms}^{-1}\)
Subtopic:  Work Energy Theorem |
 51%
Level 3: 35%-60%
NEET - 2024
Hints

The length of a magnetized iron bar is \(L\) and its magnetic moment is \(M.\) When this bar is bent to form a semicircle its magnetic moment is:
1. \(M\) 2. \(\dfrac{M\pi}{2}\)
3. \( \dfrac{M}{2\pi}\) 4. \(\dfrac{2M}{\pi}\)
Subtopic:  Bar Magnet |
 72%
Level 2: 60%+
NEET - 2024
Hints

advertisementadvertisement

A rod of length \(L\) rotates with a small uniform angular velocity \(\omega\) about its perpendicular bisector. A uniform magnetic field \(B\) exists parallel to the axis of rotation. The potential difference between the centre of the rod and an end is:
1. \(\Large\frac{B\omega L^2}{8}\) 2. \(\Large\frac{B\omega L^2}{2}\)
3. \(\Large\frac{B\omega L^2}{4}\) 4. zero
Subtopic:  Motional emf |
Level 3: 35%-60%
NEET - 2024
Hints