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Class 10 Maths Chapter 14 Question Answers - Probability

Q1: A card is drawn at random from a well shuffled deck of playing cards. Find the probability that the card drawn is
(i) a card of spade or an ace.
(ii) a black king.
(iii) neither a jack nor a king.
(iv) either a king or a queen.
Ans:
Total no. of outcomes = 52
Class 10 Maths Chapter 14 Question Answers - Probability

Q2: Five cards, the ten, jack, queen, king and ace of diamonds, are well shuffled with their faces downwards. One card is then picked up at random.
(a) What is the probability that the drawn card is the queen?
(b) If the queen is drawn and put aside, and a second card is drawn, find the probability that the second card is (i) an ace (ii) a queen.
Ans: (a)
Total events = 5; P(queen) = 1y/5
(b) Now total events = 4
(i) P (an ace) = 1/4
(ii) P (a queen) = 0/4 = 0 …[As there is no queen left]

Q3: All the red face cards are removed from a pack of 52 playing cards. A card is drawn at random from the remaining cards, after reshuffling them. Find the probability that the drawn card is
(i) of red colour
(ii) a queen
(iii) an ace
(iv) a face card
Ans: 
Total number of cards = 52
Red face cards = 6
Remaining cards = 52 – 6 = 46
Class 10 Maths Chapter 14 Question Answers - Probability

Q4: Red queens and black jacks are removed from a pack of 52 playing cards. A card is drawn at random from the remaining cards, after reshuffling them. Find the probability that the drawn card is
(i) a king
(ii) of red colour
(iii) a face card
(iv) a queen
Ans:

Number of red queens = 2
Number of black jacks = 2
Remaining cards = 52 – 2 – 2 = 48
Class 10 Maths Chapter 14 Question Answers - Probability

Q5: Cards numbered from 11 to 60 are kept in a box. If a card is drawn at random from the box, find the probability that the number on the drawn card is:
(i) an odd number
(ii) a perfect square number
(iii) divisible by 5
(iv) a prime number less than 20
Ans:
Total number of cards = 60 – 11 + 1 = 50
(i) Odd nos, are 11, 13, 15, 17, …. 59 = 25 no.
∴ P(an odd number) = 25/50 = 1/2
(ii) Perfect square numbers are 16, 25, 36, 49 = 4 numbers
∴ P(a perfect square no.) = 4/50 = 225
(iii) “Divisible by 5” numbers are 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, = 10 numbers
∴ P(divisible by 5) = 10/50 = 2/25
(iv) Prime numbers less than 20 are 2, 3, 5, 7, 11, 13, 17, 19 = 8 numbers
∴ P(a prime no. less than 20) = 8/50 = 4/25

Q6: All the black face cards are removed from a pack of 52 playing cards. The remaining cards are well shuffled and then a card is drawn at random. Find the probability of getting a:
(i) face card
(ii) red card
(iii) black card
(iv) king
Ans: 
Total number of cards = 52
Black face cards = 6
Remaining cards = 52 – 6 = 46
Class 10 Maths Chapter 14 Question Answers - Probability

Q7: Red kings and black aces are removed from a pack of 52 cards. The remaining cards are well shuffled and then a card is drawn from it. Find the probability that the drawn card is
(i) a black face card.
(ii) a red card.
Ans: 
Total nos. of cards = 52
Cards removed = 2 + 2 = 4
Remaining cards = 52 – 4 = 48
Class 10 Maths Chapter 14 Question Answers - Probability

Q8: All kings, queens and aces are removed from a pack of 52 cards. The remaining cards are well shuffled and then a card is drawn from it. Find the probability that the drawn card is
(i) a black face card.
(ii) a red card.
Ans: 
Total no. of cards = 52
No. of cards removed = (4 + 4 + 4) = 12
Remaining cards = 40
Class 10 Maths Chapter 14 Question Answers - Probability

Q9: A card is drawn from a well shuffled deck of 52 cards. Find the probability of getting
(i) a king of red colour
(ii) a face card
(iii) the queen of diamonds.
Ans:
(i) 
Total cards in a deck = 52
Total no. of kings = 4
Total no. of red kings = 2
Class 10 Maths Chapter 14 Question Answers - Probability

Q10:  Two different dice are thrown together. Find the probability that the numbers obtained have 
(i) even sum, and
(ii) even product.
Ans:
Two dice can be thrown as 6 × 6 = 36 ways.
Class 10 Maths Chapter 14 Question Answers - Probability

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FAQs on Class 10 Maths Chapter 14 Question Answers - Probability

1. What is the definition of probability in mathematics?
Ans. Probability is the measure of the likelihood that an event will occur. It is quantified as a number between 0 and 1, where 0 indicates that the event cannot occur, and 1 indicates certainty that the event will occur. The probability of an event A is often denoted as P(A).
2. How do you calculate the probability of a single event?
Ans. The probability of a single event can be calculated using the formula: P(A) = Number of favorable outcomes / Total number of possible outcomes. For example, if you want to find the probability of rolling a 3 on a six-sided die, there is 1 favorable outcome (rolling a 3) out of 6 possible outcomes. Therefore, P(rolling a 3) = 1/6.
3. What is the difference between independent and dependent events in probability?
Ans. Independent events are those whose outcomes do not affect each other. For example, flipping a coin and rolling a die are independent events. Dependent events, on the other hand, are events where the outcome of one event affects the outcome of another. For instance, drawing cards from a deck without replacement is a case of dependent events.
4. What is the concept of conditional probability?
Ans. Conditional probability is the probability of an event occurring given that another event has already occurred. It is denoted as P(A|B), which reads as "the probability of A given B." For example, if we know that it is raining (event B), the probability of someone carrying an umbrella (event A) might change based on that information.
5. How can probability be applied in real-life situations?
Ans. Probability has various applications in real life, including in fields such as finance, insurance, medicine, and sports. For instance, insurance companies use probability to assess risk and set premiums, while doctors use it to evaluate the likelihood of a patient developing a certain condition based on various factors. Additionally, probability is used in sports analytics to determine the chances of a team winning based on historical performance data.
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