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Quantitative Aptitude (SSC)

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Q. A boat travels 15 km upstream in 3 hours. If the speed of the stream is 3 km/h, what is the speed of the boat in still water?
  • A. 6 km/h
  • B. 9 km/h
  • C. 12 km/h
  • D. 15 km/h
Q. A boat travels 20 km upstream and 30 km downstream in a total time of 5 hours. If the speed of the stream is 2 km/h, what is the speed of the boat in still water?
  • A. 8 km/h
  • B. 10 km/h
  • C. 12 km/h
  • D. 14 km/h
Q. A boat travels 30 km downstream and returns upstream in a total time of 5 hours. If the speed of the stream is 2 km/h, what is the speed of the boat in still water?
  • A. 8 km/h
  • B. 10 km/h
  • C. 12 km/h
  • D. 14 km/h
Q. A boat travels 40 km downstream and 30 km upstream in a total time of 6 hours. If the speed of the stream is 4 km/h, what is the speed of the boat in still water?
  • A. 10 km/h
  • B. 12 km/h
  • C. 14 km/h
  • D. 16 km/h
Q. A boat travels 40 km downstream in 3 hours. If the speed of the current is 4 km/h, what is the speed of the boat in still water?
  • A. 10 km/h
  • B. 12 km/h
  • C. 14 km/h
  • D. 16 km/h
Q. A boat travels 50 km upstream and 70 km downstream in a total time of 10 hours. If the speed of the boat in still water is 15 km/h, what is the speed of the current?
  • A. 2 km/h
  • B. 3 km/h
  • C. 4 km/h
  • D. 5 km/h
Q. A boat travels 60 km downstream in 3 hours. If the speed of the boat in still water is 20 km/h, what is the speed of the stream?
  • A. 5 km/h
  • B. 10 km/h
  • C. 15 km/h
  • D. 20 km/h
Q. A boat travels 60 km downstream in 3 hours. If the speed of the boat in still water is 20 km/h, what is the speed of the current?
  • A. 5 km/h
  • B. 10 km/h
  • C. 15 km/h
  • D. 20 km/h
Q. A boat travels 60 km downstream in 4 hours. If the speed of the stream is 5 km/h, what is the speed of the boat in still water?
  • A. 10 km/h
  • B. 15 km/h
  • C. 20 km/h
  • D. 25 km/h
Q. A boat travels 90 km downstream in 6 hours. If the speed of the current is 3 km/h, what is the speed of the boat in still water?
  • A. 12 km/h
  • B. 15 km/h
  • C. 18 km/h
  • D. 21 km/h
Q. A boat travels downstream at a speed of 15 km/h and takes 2 hours to cover a distance. What is the distance covered?
  • A. 30 km
  • B. 25 km
  • C. 20 km
  • D. 15 km
Q. A boat travels downstream for 4 hours at a speed of 15 km/h. How far has it traveled?
  • A. 45 km
  • B. 60 km
  • C. 75 km
  • D. 90 km
Q. A book is marked at $200. If it is sold for $160, what is the percentage discount given?
  • A. 20%
  • B. 25%
  • C. 30%
  • D. 35%
Q. A book is marked at $50. If it is sold for $40, what is the percentage discount given?
  • A. 20%
  • B. 25%
  • C. 30%
  • D. 15%
Q. A book is sold for $45 after a discount of 10%. What is the marked price?
  • A. $50
  • B. $55
  • C. $60
  • D. $65
Q. A book is sold for $45 after a discount of 10%. What was the marked price?
  • A. $50
  • B. $55
  • C. $60
  • D. $65
Q. A book is sold for $45 after a discount of 10%. What was the original price of the book?
  • A. $50
  • B. $55
  • C. $60
  • D. $65
Q. A book is sold for $45 after a discount of 10%. What was the original price?
  • A. $50
  • B. $55
  • C. $60
  • D. $45
Q. A book's price is decreased by 10% and the new price is $18. What was the original price?
  • A. $20
  • B. $22
  • C. $19
  • D. $21
Q. A book's price is decreased by 20% and the new price is $24. What was the original price?
  • A. $30
  • B. $28
  • C. $26
  • D. $25
Q. A book's price is increased by 10% and then decreased by 10%. If the original price was $100, what is the final price?
  • A. $100
  • B. $99
  • C. $90
  • D. $95
Q. A book's price is increased by 15% to $23. What was the original price of the book?
  • A. $20
  • B. $21
  • C. $22
  • D. $19
Q. A book's price is increased from $15 to $18. What is the percentage increase in the price?
  • A. 20%
  • B. 15%
  • C. 25%
  • D. 10%
Q. A box contains 3 red balls and 5 blue balls. What is the probability of picking a red ball?
  • A. 3/8
  • B. 5/8
  • C. 1/2
  • D. 1/3
Q. A bus leaves a station and travels at a speed of 50 km/h. If it travels for 3 hours, how far will it have traveled?
  • A. 120 km
  • B. 130 km
  • C. 140 km
  • D. 150 km
Q. A bus travels at a speed of 50 km/h. If it takes 3 hours to reach its destination, how far is the destination?
  • A. 120 km
  • B. 130 km
  • C. 140 km
  • D. 150 km
Q. A bus travels at a speed of 50 km/h. If it takes 3 hours to reach its destination, what is the distance covered?
  • A. 120 km
  • B. 130 km
  • C. 150 km
  • D. 160 km
Q. A can complete a work in 10 days, while B can complete the same work in 15 days. If both work together, how many days will they take to complete the work?
  • A. 5
  • B. 6
  • C. 7
  • D. 8
Q. A can complete a work in 8 days, B can complete it in 12 days. If they work together for 4 days, how much work is left?
  • A. 1/3
  • B. 1/4
  • C. 1/5
  • D. 1/6
Q. A can complete a work in 8 days, B in 12 days, and C in 24 days. If they work together for 2 days, how much work is left?
  • A. 1/4
  • B. 1/3
  • C. 1/2
  • D. 1/6
Showing 91 to 120 of 1468 (49 Pages)

Quantitative Aptitude (SSC) MCQ & Objective Questions

Quantitative Aptitude is a crucial component of various exams, especially for students preparing for the SSC (Staff Selection Commission) exams. Mastering this subject not only enhances problem-solving skills but also boosts confidence in tackling objective questions. Regular practice with MCQs and practice questions is essential for scoring better and understanding important concepts effectively.

What You Will Practise Here

  • Number Systems and their properties
  • Percentage, Ratio, and Proportion calculations
  • Time, Speed, and Distance problems
  • Simple and Compound Interest concepts
  • Algebraic expressions and equations
  • Data Interpretation and analysis
  • Mensuration and Geometry basics

Exam Relevance

Quantitative Aptitude is a significant part of the syllabus for CBSE, State Boards, and competitive exams like NEET and JEE. In these exams, students can expect questions that assess their ability to apply mathematical concepts to real-world scenarios. Common question patterns include direct problem-solving, data interpretation, and application of formulas, making it essential for students to be well-prepared.

Common Mistakes Students Make

  • Misunderstanding the problem statement leading to incorrect assumptions
  • Neglecting to apply the correct formulas in calculations
  • Overlooking units of measurement in word problems
  • Rushing through questions without double-checking calculations

FAQs

Question: What are the best ways to prepare for Quantitative Aptitude in SSC exams?
Answer: Regular practice with MCQs, understanding key concepts, and solving previous years' question papers are effective strategies.

Question: How can I improve my speed in solving Quantitative Aptitude questions?
Answer: Practicing timed quizzes and focusing on shortcut methods can significantly enhance your speed and accuracy.

Start your journey towards mastering Quantitative Aptitude today! Solve practice MCQs and test your understanding to achieve your exam goals. Remember, consistent practice is the key to success!

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