The truth table given below is for: (A and B are the inputs, Y is the output)
 
A B Y
0 0 1
0 1 1
1 0 1
1 1 0
1.  NOR
2.  AND
3.  XOR
4.  NAND

Subtopic:  Logic gates |
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Two rectangular blocks A and B of masses \(2\) kg and \(3\) kg respectively are connected by a spring of spring constant \(10.8\) Nm-1 and are placed on a frictionless horizontal surface. Block A was given an initial velocity of \(0.15\) ms-1 in the direction shown in the figure. The maximum compression of the spring during the motion is:

      
1. \(0.01\) m
2. \(0.02\) m
3. \(0.05\) m
4. \(0.03\) m

Subtopic:  Elastic Potential Energy |
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\(0.1\) m3 of water at \(80 ~^\circ \mathrm{C}\) is mixed with \(0.3\) m3 of water at \(60 ~^\circ \mathrm{C}.\) The final temperature of the mixture is:
1. \(65 ~^\circ \mathrm{C}\)
2. \(70 ~^\circ \mathrm{C}\)
3. \(60 ~^\circ \mathrm{C}\)
4. \(75 ~^\circ \mathrm{C}\)
Subtopic:  Calorimetry |
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 \(y=3\sin\pi\Big(\frac t2-\frac x4\Big),\) represents an equation of a progressive wave, where \(t\) is in second and \(x\) is in meter. The distance travelled by the wave in \(5\) seconds is:
1. \(8\) m
2. \(10\) m
3. \(5\) m
4. \(32\) m

Subtopic:  Wave Motion |
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A body of mass \(m_1=4~\mathrm{kg}\) moves at \(5i~\mathrm{m/s}\) and another body of mass \(m_2=2~\mathrm{kg}\) moves at \(10i~\mathrm{m/s}\). The kinetic energy of the centre of mass is:
1. \(\frac{200}{3}~\text J\)
2. \(\frac{500}{3}~\text J\)
3. \(\frac{400}{3}~\text J\)
4. \(\frac{800}{3}~\text J\)

 

Subtopic:  Center of Mass |
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A wheel of radius \(0.4~\mathrm{m}\) can rotate freely about its axis as shown in the figure. A string is wrapped over its rim, and a mass of \(4~\mathrm{kg}\) is hung. An angular acceleration of \(8~\mathrm{rad/s^2}\) is produced in it due to the torque. Then, moment of inertia of the wheel is: (Take \(g=10\) ms-2
    
1. \(2~\mathrm{kg-m^2}\) 
2. \(1~\mathrm{kg-m^2}\) 
3. \(4~\mathrm{kg-m^2}\) 
4. \(8~\mathrm{kg-m^2}\) 

Subtopic:  Moment of Inertia |
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An object start sliding on a frictionless inclined plane and from the same height, another object starts falling freely. Then:
 
1. both will reach with same speed
2. both will reach with same acceleration
3. both will reach in the same time
4. none of the above

Subtopic:  Speed & Velocity |
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A boy on a cycle pedals around a circle of \(20\) meters radius at a speed of \(20\) m/s. The combined mass of the body and the cycle makes with the vertical so that it may not fall is: (Take \(g=9.8\) m/s2 )
1. \(60.25^\circ\)
2. \(63.90^\circ\)
3. \(26.12^\circ\)
4. \(30.00^\circ\)

Subtopic:  Banking of Roads |
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NEET 2023 - Target Batch - Aryan Raj Singh
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NEET 2023 - Target Batch - Aryan Raj Singh

A coin is dropped in a lift. It takes time \(t_1\) to reach the floor when the lift is stationary. It takes time \(t_2\) when the lift is moving up with constant acceleration. Then, what is the relationship between \(t_1\) and \(t_2 ?\)
1. \(t_1>t_2\)
2. \(t_2>t_1\)
3. \(t_1=t_2\)
4. \(t_1>>t_2\)

Subtopic:  Acceleration |
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The engine of a jet aircraft applies a thrown force of \(10^5\) N during takeoff and causes the plane to attain a velocity of \(1\) km/s in \(10\) s. The mass of the plane is:
1. \(10^2\) kg
2. \(10^3\) kg
3. \(10^4\) kg
4. \(10^5\) kg

Subtopic:  Newton's Laws |
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