Major Competitive Exams

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Major Competitive Exams MCQ & Objective Questions

Major Competitive Exams play a crucial role in shaping the academic and professional futures of students in India. These exams not only assess knowledge but also test problem-solving skills and time management. Practicing MCQs and objective questions is essential for scoring better, as they help in familiarizing students with the exam format and identifying important questions that frequently appear in tests.

What You Will Practise Here

  • Key concepts and theories related to major subjects
  • Important formulas and their applications
  • Definitions of critical terms and terminologies
  • Diagrams and illustrations to enhance understanding
  • Practice questions that mirror actual exam patterns
  • Strategies for solving objective questions efficiently
  • Time management techniques for competitive exams

Exam Relevance

The topics covered under Major Competitive Exams are integral to various examinations such as CBSE, State Boards, NEET, and JEE. Students can expect to encounter a mix of conceptual and application-based questions that require a solid understanding of the subjects. Common question patterns include multiple-choice questions that test both knowledge and analytical skills, making it essential to be well-prepared with practice MCQs.

Common Mistakes Students Make

  • Rushing through questions without reading them carefully
  • Overlooking the negative marking scheme in MCQs
  • Confusing similar concepts or terms
  • Neglecting to review previous years’ question papers
  • Failing to manage time effectively during the exam

FAQs

Question: How can I improve my performance in Major Competitive Exams?
Answer: Regular practice of MCQs and understanding key concepts will significantly enhance your performance.

Question: What types of questions should I focus on for these exams?
Answer: Concentrate on important Major Competitive Exams questions that frequently appear in past papers and mock tests.

Question: Are there specific strategies for tackling objective questions?
Answer: Yes, practicing under timed conditions and reviewing mistakes can help develop effective strategies.

Start your journey towards success by solving practice MCQs today! Test your understanding and build confidence for your upcoming exams. Remember, consistent practice is the key to mastering Major Competitive Exams!

Q. A data set has a mean of 20 and a variance of 16. What is the range of the data if it is normally distributed? (2023)
  • A. 8
  • B. 16
  • C. 32
  • D. 64
Q. A data set has a mean of 50 and a variance of 25. What is the standard deviation? (2021)
  • A. 5
  • B. 10
  • C. 15
  • D. 20
Q. A data set has values: 10, 12, 14, 16. What is the variance? (2021)
  • A. 2
  • B. 4
  • C. 6
  • D. 8
Q. A data set has values: 2, 4, 4, 4, 5, 5, 7, 9. What is the variance? (2021)
  • A. 4
  • B. 5
  • C. 6
  • D. 7
Q. A delivery truck can carry 200 kg of goods. If it makes 4 trips in a day, how much total weight can it deliver in a day?
  • A. 600 kg
  • B. 800 kg
  • C. 1000 kg
  • D. 1200 kg
Q. A diamond has a refractive index of 2.42. What is the critical angle for total internal reflection at the diamond-air interface?
  • A. 24.4°
  • B. 41.1°
  • C. 23.6°
  • D. 17.5°
Q. A Diamond is to a Gemstone as a Rose is to ___
  • A. Flower
  • B. Plant
  • C. Tree
  • D. Bush
Q. A die is rolled. What is the probability of getting a number greater than 4?
  • A. 1/6
  • B. 1/3
  • C. 1/2
  • D. 1/4
Q. A die is rolled. What is the probability of getting an even number given that the number rolled is greater than 2?
  • A. 1/2
  • B. 1/3
  • C. 2/3
  • D. 1/4
Q. A die is rolled. What is the probability of getting an even number?
  • A. 1/2
  • B. 1/3
  • C. 1/6
  • D. 2/3
Q. A die is rolled. What is the probability of rolling an even number given that the number rolled is greater than 2?
  • A. 1/2
  • B. 1/3
  • C. 1/4
  • D. 2/3
Q. A die is rolled. What is the probability of rolling an even number?
  • A. 1/2
  • B. 1/3
  • C. 1/6
  • D. 2/3
Q. A diet consists of 60% carbohydrates, 25% proteins, and 15% fats. If a person consumes 2000 calories, how many calories come from proteins? (2000)
  • A. 300 calories
  • B. 400 calories
  • C. 500 calories
  • D. 600 calories
Q. A diet consists of 60% carbohydrates, 25% proteins, and 15% fats. If the total caloric intake is 2000 calories, how many calories come from fats? (2020)
  • A. 300
  • B. 400
  • C. 500
  • D. 600
Q. A dipole consists of two charges +q and -q separated by a distance d. What is the expression for the dipole moment?
  • A. qd
  • B. q/d
  • C. q^2d
  • D. q/d^2
Q. A dipole consists of two charges +q and -q separated by a distance d. What is the dipole moment?
  • A. qd
  • B. q/d
  • C. q^2d
  • D. q/d^2
Q. A dipole consists of two equal and opposite charges separated by a distance 'd'. What is the dipole moment? (2023)
  • A. qd
  • B. q/d
  • C. q^2d
  • D. qd^2
Q. A dipole consists of two equal and opposite charges separated by a distance of 0.1m. What is the dipole moment if each charge is 1μC?
  • A. 1 × 10^-7 C m
  • B. 1 × 10^-6 C m
  • C. 1 × 10^-5 C m
  • D. 1 × 10^-4 C m
Q. A dipole consists of two equal and opposite charges separated by a distance. What happens to the dipole moment if the distance is doubled?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. A dipole is placed in a uniform electric field. What is the torque experienced by the dipole? (2023)
  • A. pE
  • B. pE sin(θ)
  • C. pE cos(θ)
  • D. Zero
Q. A dipole moment is defined as the product of charge and the distance between the charges. What is the dipole moment of a dipole consisting of charges +2μC and -2μC separated by 0.1m?
  • A. 4 × 10^-7 C m
  • B. 2 × 10^-7 C m
  • C. 2 × 10^-6 C m
  • D. 4 × 10^-6 C m
Q. A dipole moment p is placed in a uniform electric field E. What is the torque experienced by the dipole?
  • A. pE
  • B. pE sin θ
  • C. pE cos θ
  • D. 0
Q. A disaster relief fund has $500,000. If 30% is allocated for immediate response, how much money is left for long-term recovery?
  • A. $350,000
  • B. $400,000
  • C. $450,000
  • D. $500,000
Q. A disc of mass M and radius R is rotating about its axis with an angular velocity ω. What is the angular momentum of the disc?
  • A. (1/2)MR^2ω
  • B. MR^2ω
  • C. MRω
  • D. (1/4)MR^2ω
Q. A disc of radius R and mass M is rotating about its axis with an angular velocity ω. What is the kinetic energy of the disc?
  • A. (1/2)Iω^2
  • B. (1/2)Mω^2
  • C.
  • D. Mω^2
Q. A disc of radius R and mass M is rotating about its axis with an angular velocity ω. What is its kinetic energy?
  • A. (1/2)Iω^2
  • B. (1/2)Mω^2
  • C. (1/2)M(R^2)ω^2
  • D. (1/2)(MR^2)ω^2
Q. A disc of radius R and mass M is rotating about its axis with an angular velocity ω. What is its rotational kinetic energy? (2020)
  • A. (1/2)Iω²
  • B. (1/2)Mω²
  • C.
  • D. Mω²
Q. A disc of radius R and mass M is rotating about its axis with an angular velocity ω. What is its angular momentum? (2020)
  • A.
  • B. MωR²
  • C. 0.5MR²ω
  • D. MR²ω
Q. A disc of radius R and mass M is rotating about its axis with an angular velocity ω. What is the moment of inertia of the disc? (2020)
  • A. (1/2)MR²
  • B. (1/3)MR²
  • C. MR²
  • D. (1/4)MR²
Q. A disc rolls without slipping on a horizontal surface. If its radius is R and it rolls with a linear speed v, what is its angular speed?
  • A. v/R
  • B. 2v/R
  • C. v/2R
  • D. v^2/R
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