TS EAMCET Question Paper 2023 (Available): Check Previous Year Question Paper with Solution PDF (2022-2015)

TS EAMCET 2023 Question Paper with Solution PDFs are available here. The question paper includes 160 questions carrying a weightage of 1 mark each. The questions are based on topics from Physics, Chemistry and Mathematics or Zoology/ Botany. 

TS EAMCET 2023 Question Paper

Subject Exam date Question Paper
MPC May 14, 2023 Shift 1 Question Paper
MPC May 14, 2023 Shift 2 Question Paper
MPC May 13, 2023 Shift 1 Question Paper
MPC May 13, 2023 Shift 2 Question Paper
MPC May 12, 2023 Shift 1 Question Paper
MPC May 12, 2023 Shift 2 Question Paper
BiPC May 11, 2023 Shift 1 Question Paper 
BiPC May 11, 2023 Shift 2 Question Paper
BiPC May 10, 2023 Shift 1 Question Paper
BiPC May 10, 2023 Shift 2 Question Paper


Year-wise TS EAMCET Question Papers

Year Link
2022 Click here
2021 Click here
2020 Click here
2019 Click here
2018 Click here
2017 Click here

TS EAMCET Question Paper Pattern

Mode of exam Online- Computer-based Test
Language English, Urdu, Telugu
Duration 3 hours
Type of questions Multiple Choice Questions MCQs
Total no. of questions 160 (40+40+80)
Pattern Section A: Physics Section B: Chemistry Section C: Mathematics/ Biology
Marking pattern +1 mark
Negative marking No

*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.

TS EAMCET 2023 Questions

  • 1.
    A drop of water of radius 0.0015 mm is falling in air. The coefficient of viscosity of air is \( 1.8 \times 10^5 \, \text{kgm}^{-1} \, \text{s}^{-1} \). If the density of the air is neglected, then what will be the terminal velocity of the drop?

      • \( 2.72 \times 10^{-5} \, \text{m/s} \)
      • \( 1.35 \times 10^{-5} \, \text{m/s} \)
      • \( 2.72 \times 10^{-4} \, \text{m/s} \)
      • \( 3.45 \times 10^{-4} \, \text{m/s} \)

    • 2.
      If the sum of two vectors is a unit vector, then the magnitude of their difference is:

        • \( \sqrt{2} \)
        • \( \sqrt{3} \)
        • \( \frac{1}{\sqrt{3}} \)
        • 1

      • 3.
        A body is projected vertically upward with an initial velocity of 40 m/s. Calculate the maximum height reached by the body. (Take \( g = 9.8 \, \text{m/s}^2 \))

          • 80.4 m
          • 160.8 m
          • 100 m
          • 120 m

        • 4.
          A ball is projected vertically up with speed \( V_0 \) from a certain height \( H \). When the ball reaches the ground, the speed is \( 3V_0 \). The time taken by the ball to reach the ground and height \( H \) respectively are:

            • \( \frac{V_0}{g} \), \( \frac{V_0^2}{2g} \)
            • \( \frac{V_0}{g} \), \( \frac{3V_0^2}{2g} \)
            • \( \frac{2V_0}{g} \), \( \frac{V_0^2}{2g} \)
            • \( \frac{3V_0}{g} \), \( \frac{3V_0^2}{2g} \)

          • 5.
            The molecular weight of a gas is 32. If 0.5 moles of the gas occupy 22.4 liters at standard temperature and pressure (STP), what is the density of the gas?

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