If A and B are two mutually exclusive events with P(a) > O and P(b) > 0 then it implies they are also independent. * O False O True
Permutations and Combinations
If there are 5 dishes, they can be relished in any order at a time. In permutation, it should be in a particular order. In combination, the order does not matter. Take 3 letters a, b, and c. The possible ways of pairing any two letters are ab, bc, ac, ba, cb and ca. It is in a particular order. So, this can be called the permutation of a, b, and c. But if the order does not matter then ab is the same as ba. Similarly, bc is the same as cb and ac is the same as ca. Here the list has ab, bc, and ac alone. This can be called the combination of a, b, and c.
Counting Theory
The fundamental counting principle is a rule that is used to count the total number of possible outcomes in a given situation.
![If A and B are two mutually exclusive
events with P(a) > O and P(b) > O then it
implies they are also independent. *
O False
True
The probability that person A completes
all the tasks assigned is 50% and that of
person B is 20%. Find the probability that
all the tasks are completed. *
O 0.45
0.35
O 0.15
O 0.25](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe21f9018-a2e4-4e52-b623-ea4dda0ab90c%2F266b7289-ad25-4eec-b261-bb90a98fe854%2Fcorwa5c_processed.jpeg&w=3840&q=75)
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