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TS EAMCET 2022 (Online) 18th July Morning Shift

TS EAMCET / 160 questions

2025Mon, Jul 18, 2022 3:30 AM160 PYQs
1Ray Optics
A lens is made of glass having an index of refraction 1.5 . One side of the lens is flat and the other side is convex with a radius $R$. If an object is placed 60 cm , towards the convex side of the lens, the image is formed at120 cm on the...
MCQ+1 / -02022
2Semiconductor Devices And Logic Gates
In a $p$-type semiconductor, which of the following statements is true?
MCQ+1 / -02022
3Semiconductor Devices And Logic Gates
In a NAND gate, $A$ and $B$ are inputs and $Y$ is the output, then the correct option is
MCQ+1 / -02022
4Simple Harmonic Motion
A body starting at $t=0$ from origin oscillates simple harmonically with a period of 4 s . After what time will its kinetic energy by $75 \%$ of its total energy?
MCQ+1 / -02022
5Units And Measurement And Dimensions
If $E$ and $E_0$ denote energies at time $t$ and $t_0$ respectively, and $L$ and $L_0$ distance from same point at $t$ and $t_0$ respectively, then which of the following equations can be declared to be incorrect on dimensional grounds?
(A)...
MCQ+1 / -02022
6Units And Measurement And Dimensions
Choose the correct statement from following.
MCQ+1 / -02022
7Vector Algebra
An ant starts from the origin and crawls 10 cm along the $X$-axis and then 20 cm along the $Y$-axis. The dot product of the ant's displacement vector with the position vector of a point that makes $45^{\circ}$ with the $X$-axis and has a ma...
MCQ+1 / -02022
8Wave Optics
A Young's double slit experiment apparatus has slits separated by 0.2 mm and a screen 60 cm away from the slits. The whole apparatus is immersed in a liquid medium of refractive index $11 / 9$ and the slits are illuminated with green light ...
MCQ+1 / -02022
9Waves
Two waves of amplitudes $A_1$ and $A_2$ respectively, are superimposed. The ratio between the maximum and minimum intensities of the resultant waves is $9: 4$.
The value of $\frac{A_2}{A_1}$ is (assume $A_1>A_2$ )
MCQ+1 / -02022
10Work Energy And Power
The potential energy of an object is $U(x)=\left(5 x^2-4 x^3\right) \mathrm{J}$, where $x$ is the position in metre. The position at which the force becomes zero is
MCQ+1 / -02022

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