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What is the probability of getting 53 Mondays in a leap year?

In a leap year there will be 52 Mondays and 2 days will be left. Of these total 7 outcomes, the favourable outcomes are 2. Hence, the probability of getting 53 Mondays in a leap year P(E) = 2/7.

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What is the probability that there are exactly 53 Mondays in an ordinary year?

There will be 52 Mondays and 1 day left in the year. It can be Monday, Tuesday, Wednesday, Thursday, Friday, Saturday, and Sunday. The positive outcome is 1.

People also ask what is the probability of getting 53 fridays in a non-leap year?

1/7 is the probability of getting 53 fridays in a non-leap year. Consequently, how big is 52 factorial? approximately 8.0658e67 52! is approximately 8.0658e67. For an exact representation, view a factorial table or try a "new-school" calculator, one that understands long integers.

How much is 8.06 e67?

ways, in which we can arrange a deck of cards. 52! is a damn high number which is equal to 8.06e+67. 80,658,175,170,943,878,571,660,636,856,403,766,975,289,505,440,883,277,824,000,000,000,000 to be exact. It is a 68 digit number. In respect to this, how do you imagine 52 factorial?

What is the chance that a leap year has 53 Sundays?

A week has 7 days and total days are 366. There is a chance of a leap year with 53 Sundays.

Who invented 52 playing cards?

Chinese PLAYING cards were invented by the Chinese before AD1000. They reached Europe around 1360, not directly from China but from the Mameluke empire of Egypt. How many of each cards are in a deck? A "standard" deck of playing cards consists of 52 Cards in each of the 4 suits of Spades, Hearts, Diamonds, and Clubs. Each suit contains 13 cards: Ace, 2, 3, 4, 5, 6, 7, 8, 9, 10, Jack, Queen, King. Modern decks also usually include two Jokers.

By Merritt

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