The \((P\text{-}V)\) diagram for an ideal gas in a piston-cylinder assembly undergoing a thermodynamic process is shown in the figure. The process is:

1. adiabatic  2. isochoric
3. isobaric  4. isothermal 
Subtopic:  Types of Processes |
 85%
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The maximum power is dissipated for an AC in a/an:
1. resistive circuit 2. \({LC}\) circuit
3. inductive circuit 4. capacitive circuit
Subtopic:  Power factor |
 75%
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NEET - 2023
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For the circuit shown in the figure, the current \(I\) will be:

 

1. \(0.75~\text{A}\) 2. \(1~\text{A}\)
3. \(1.5~\text{A}\) 4. \(0.5~\text{A}\)
Subtopic:  Grouping of Cells |
 82%
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NEET - 2020
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An intrinsic semiconductor is converted into an \(\mathrm{n\text{-}}\)type extrinsic semiconductor by doping it with: 
1. phosphorous
2. aluminium
3. silver
4. germanium

Subtopic:  Types of Semiconductors |
 82%
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The EM wave with the shortest wavelength among the following is:
1. Ultraviolet rays 
2. \(X\)-rays
3. Gamma-rays
4. Microwaves  
Subtopic:  Electromagnetic Spectrum |
 80%
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NEET - 2020
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Time intervals measured by a clock give the following readings: 
\(1.25~\text{s},~1.24~\text{s}, ~1.27~\text{s},~1.21~\text{s},~1.28~\text{s}.\) 
What is the percentage relative error of the observations? 
1. \(2\)%
2. \(4\)%
3. \(16\)%
4. \(1.6\)%

Subtopic:  Errors |
 52%
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NEET - 2020
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Three identical spheres, each of mass \(M\), are placed at the corners of a right-angle triangle with mutually perpendicular sides equal to \(2~\text{m}\) (see figure). Taking the point of intersection of the two mutually perpendicular sides as the origin, find the position vector of the centre of mass. 
        
1. \(2(\hat{i}+\hat{j})\)
2. \(\hat{i}+\hat{j}\)
3. \(\frac{2}{3}(\hat{i}+\hat{j})\)
4. \(\frac{4}{3}(\hat{i}+\hat{j})\)

Subtopic:  Center of Mass |
 67%
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NEET - 2020
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What is the depth at which the value of acceleration due to gravity becomes \(\dfrac{1}{{n}}\) times it's value at the surface of the earth? (radius of the earth = \(\mathrm{R}\))  
1. \(\dfrac R {n^2}\) 2. \(\dfrac {R~(n-1)} n\)
3. \(\dfrac {Rn} { (n-1)}\) 4. \(\dfrac R n\)  
Subtopic:  Acceleration due to Gravity |
 84%
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A particle moves with a velocity \((5\hat i-3\hat j+6\hat k)~\text{ms}^{-1}\) horizontally under the action of a constant force \((10\hat i+10\hat j+20\hat k)~\text N.\) The instantaneous power supplied to the particle is:
1. \(200~\text W\) 2. zero
3. \(100~\text W\) 4. \(140~\text W\)
Subtopic:  Power |
 79%
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NEET - 2023
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For the circuit given below, Kirchhoff's loop rule for the loop \(BCDEB\) is given by the equation:

         

1. \(-{i}_2 {R}_2+{E}_2-{E}_3+{i}_3{R}_1=0\)
2. \({i}_2{R}_2+{E}_2-{E}_3-{i}_3 {R}_1=0\)
3. \({i}_2 {R}_2+{E}_2+{E}_3+{i}_3 {R}_1=0\)
4. \(-{i}_2 {R}_2+{E}_2+{E}_3+{i}_3{R}_1=0\)
Subtopic:  Kirchoff's Voltage Law |
 71%
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