A MAN WAS OUTSIDE TAKING A WALK WHEN IT STARTED TO RAIN THE MAN DIDNT HAVE AN UMBRELLA AND HE WASNT WE RIDDLES WITH ANSWERS TO SOLVE - PUZZLES & BRAIN TEASERS

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Riddles and Answers © 2024

The Murder Of Mr Brown

Hint:
The chef killed Mr. Brown because he said he was cooking breakfast but it was a Sunday afternoon.
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A Round Hotel

Hint:
The waiter. It's a round hotel.
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The Ship Thief Riddle

Hint:
The thief is the Pakistani guy. It is because the flag of Japan looks same when upside down and no one can tell if it is upside down. So, he was telling a lie.
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Three Hunters Riddle

Hint:
They didn't really pay $9 each, remember? The bell-boy was too lazy to add up the actual sum that they would pay. They reeeally payed about a $8.66 each. So $8.66 times the three of them equals about $25, plus the $5 in the bell-boys equals $30
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I Can Fly Riddle

Hint:
Parrot!
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Found In Tall Buildings

Hint:
A elevator
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Covered In A Lot Of Sand

Hint:
The desert
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A Lot Of Sand

Hint:
The desert
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Dying Of Thirst

Hint:
Sand

Desert is the answer to this riddle. Kill and threatened by my people are talking about animals that live in the desert.
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The Walls Of Jericho

Hint:
Joshua
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The Secret Santa Exchange

Hint: It's not as difficult as it seems. It's the number of ways the friends can form a circle divided by the number of ways the names can be drawn out of the hat.
1/10

For a group of n friends, there are n! (n factorial) ways to draw the names out of the hat. Since a circle does not have a beginning and end, choose one person as the beginning and end of the circle. There are now (n-1)! ways to distribute the remaining people around the circle. Thus the probability of forming a single circle is

(n-1)! / n!

Since n! = (n-1)! * n (for n > 1), this can be rewritten as

(n-1)! / (n*(n-1)!)

Factoring out the (n-1)! from the numerator and denominator leaves

1/n

as the probability.
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Prints In The Sand

Hint:
A foot
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Waking In Woods Riddle

Hint:
Half way. After that you are walking out of the woods.
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An Absentminded Philosopher Riddle

Hint: We can assume that the journey to his friend's and back took exactly the same amount of time.
He Philosopher winds the grandfather clock to a random time right before leaving, 9:00 for example. Although this is not the right time, the clock can now be used to measure elapsed time. As soon as he arrives at his friend's house, the Philosopher looks at the time on his friend's clock. Let's say the time is 7:15. He stays overnight and then, before leaving in the morning, he looks at the clock one more time. Let's say the time is now 10:15 (15 hours later). When the Philosopher arrives home, he looks at his grandfather clock. Let's say his clock reads 12:40. By subtracting the time he set it to when he left (9:00) from the current time (12:40) he knows that he has been gone for 15 hours and 40 minutes. He knows that he spent 15 hours at his friends house, so that means he spent 40 minutes walking. Since he walked at the same speed both ways, it took him 20 minutes to walk from his friend's home back to his place. So the correct time to set the clock to in this example would therefore be 10:15 (the time he left his friend's house) + 20 minutes (the time it took him to walk home) = 10:35.
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A London Scholar Riddle

Hint: The name was inside the sentence.
An-Drew. Andrew.
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