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Q. If J = [[1, 2], [2, 4]], what is det(J)? (2022)
  • A. 0
  • B. 1
  • C. 2
  • D. 4
Q. If J = [[3, 1], [2, 4]], find det(J). (2023)
  • A. 10
  • B. 12
  • C. 8
  • D. 6
Q. If one root of the equation x² - 6x + k = 0 is 2, find k. (2022)
  • A. 8
  • B. 10
  • C. 12
  • D. 6
Q. If one root of the equation x² - 7x + k = 0 is 3, find k. (2023)
  • A. 10
  • B. 12
  • C. 15
  • D. 9
Q. If one root of the equation x² - 7x + k = 0 is 3, what is the value of k? (2020)
  • A. 10
  • B. 12
  • C. 15
  • D. 9
Q. If one root of the equation x² - 7x + p = 0 is 3, what is the value of p? (2020)
  • A. 6
  • B. 9
  • C. 12
  • D. 15
Q. If sin(θ) = 0.5, what is θ in degrees? (2014)
  • A. 30°
  • B. 45°
  • C. 60°
  • D. 90°
Q. If sin(θ) = 0.6, what is the approximate value of θ in degrees? (2019)
  • A. 36.87°
  • B. 45°
  • C. 53.13°
  • D. 60°
Q. If sin(θ) = 0.8, what is cos(θ) using Pythagorean identity? (2020)
  • A. 0.6
  • B. 0.8
  • C. 0.4
  • D. 0.2
Q. If sin(θ) = 0.8, what is cos(θ)? (2022)
  • A. 0.6
  • B. 0.8
  • C. 0.4
  • D. 0.2
Q. If sin(θ) = 0.866, what is θ in degrees? (2020)
  • A. 30°
  • B. 45°
  • C. 60°
  • D. 90°
Q. If sin(θ) = 0.866, what is θ? (2022)
  • A. 30°
  • B. 45°
  • C. 60°
  • D. 90°
Q. If sin(θ) = 1, what is the value of θ in degrees? (2019)
  • A.
  • B. 45°
  • C. 90°
  • D. 180°
Q. If sin(θ) = 1, what is the value of θ? (2023)
  • A.
  • B. 90°
  • C. 180°
  • D. 270°
Q. If sin(θ) = 1, what is θ? (2023)
  • A.
  • B. 30°
  • C. 90°
  • D. 180°
Q. If sin(θ) = 1/2, what is the possible value of θ? (2022)
  • A. 30°
  • B. 60°
  • C. 90°
  • D. 45°
Q. If sin(θ) = 1/√2, what is cos(θ)? (2022)
  • A. 1/√2
  • B. 0
  • C. √2/2
  • D. 1
Q. If sin(θ) = 1/√2, what is θ in degrees?
  • A. 30°
  • B. 45°
  • C. 60°
  • D. 90°
Q. If tan(θ) = 1, what is the value of θ? (2020)
  • A.
  • B. 30°
  • C. 45°
  • D. 60°
Q. If the amplitude of a simple harmonic oscillator is increased, what happens to its total energy? (2021)
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. If the amplitude of a simple harmonic oscillator is tripled, how does the total energy change? (2020)
  • A. Increases by 3 times
  • B. Increases by 6 times
  • C. Increases by 9 times
  • D. Remains the same
Q. If the amplitude of a wave is doubled, how does it affect the energy of the wave? (2020)
  • A. Remains the same
  • B. Doubles
  • C. Increases by four times
  • D. Halves
Q. If the amplitude of a wave is doubled, how does this affect the energy carried by the wave? (2021)
  • A. Energy is halved
  • B. Energy remains the same
  • C. Energy is doubled
  • D. Energy is quadrupled
Q. If the area of a circle is 78.5 cm², what is the radius? (2021)
  • A. 5 cm
  • B. 7 cm
  • C. 10 cm
  • D. 6 cm
Q. If the area of a coil is doubled while keeping the magnetic field constant, what happens to the magnetic flux through the coil? (2023)
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. If the area of a loop in a magnetic field is doubled while keeping the magnetic field strength constant, what happens to the magnetic flux through the loop?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. If the capacitance in an AC circuit is increased, what happens to the capacitive reactance? (2023)
  • A. It increases
  • B. It decreases
  • C. It remains the same
  • D. It becomes zero
Q. If the charge on a capacitor is doubled, what happens to the energy stored? (2019)
  • A. It remains the same
  • B. It doubles
  • C. It quadruples
  • D. It halves
Q. If the circumference of a circle is 31.4 cm, what is its radius? (2022)
  • A. 5 cm
  • B. 10 cm
  • C. 15 cm
  • D. 20 cm
Q. If the circumference of a circle is 31.4 cm, what is its radius? (Use π = 3.14) (2015)
  • A. 5 cm
  • B. 7 cm
  • C. 10 cm
  • D. 8 cm
Showing 961 to 990 of 2530 (85 Pages)

MHT-CET MCQ & Objective Questions

The MHT-CET exam is a crucial stepping stone for students aspiring to pursue engineering and pharmacy courses in Maharashtra. Mastering the MHT-CET MCQ format is essential, as it not only tests your knowledge but also enhances your exam preparation strategy. Practicing objective questions helps in identifying important concepts and improves your chances of scoring better in this competitive exam.

What You Will Practise Here

  • Fundamental concepts in Physics, Chemistry, and Mathematics
  • Key formulas and their applications in problem-solving
  • Important definitions and terminologies relevant to MHT-CET
  • Diagrams and illustrations for better conceptual understanding
  • Practice questions that mirror the exam pattern
  • Analysis of previous years' MHT-CET questions
  • Techniques for tackling tricky MCQs effectively

Exam Relevance

The MHT-CET exam is aligned with the syllabus of CBSE, State Boards, and is also relevant for students preparing for NEET and JEE. Many concepts from the MHT-CET syllabus appear in these competitive exams, often in the form of application-based questions or conceptual MCQs. Understanding the common question patterns can significantly enhance your preparation and performance.

Common Mistakes Students Make

  • Misinterpreting questions due to lack of clarity in reading
  • Neglecting to review fundamental concepts before attempting MCQs
  • Overlooking units and dimensions in Physics and Chemistry problems
  • Rushing through practice questions without thorough understanding
  • Failing to manage time effectively during the exam

FAQs

Question: What are the best resources for MHT-CET MCQ questions?
Answer: Utilizing online platforms like SoulShift, which offer a variety of practice questions and mock tests, can be very beneficial.

Question: How can I improve my speed in solving MHT-CET objective questions?
Answer: Regular practice and timed mock tests can help enhance your speed and accuracy in solving MCQs.

Start your journey towards success by solving MHT-CET practice MCQs today! Test your understanding and build your confidence for the exam ahead.

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