GO T RIDDLES WITH ANSWERS TO SOLVE - PUZZLES & BRAIN TEASERS

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Riddles and Answers © 2024

Rooster At The Doctor Riddle

Hint:
It had the cock-a-doodle-flu
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Ninja At The Doctor

Hint:
He had kung-flu.
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The Pirate Movie Riddle

Hint:
It was rated arrrgh.
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Baseball Player Jail

Hint:
He stole second base
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Getting Into A Jam

Hint:
Grab some bread and peanut-butter.
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School Ladder Riddle

Hint:
Because it was high school
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Monster Ball Riddle

Hint:
Its scary Godmother
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Queen At The Dentist

Hint:
To get crowns on her teet
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Credit Card Jail Riddle

Hint:
It was guilty as charged
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Two Brothers Riddle

Hint: Your burdens are also our burdens, but greater by the measure of you.
A pair of shoes.
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Going Straight Up And Down

Hint:
An elevator
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Got No Skin Riddle

Hint:
A skeleton
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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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Giving You Your Sight

Hint:
An eye
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Knights Of The Round Table Riddle

Hint: Does it matter if they are sitting clockwise or counterclockwise? Or where the oldest sits?
The odds are 11:1. (The probability is 1/12.)

Imagine they sat down in age order, with each person randomly picking a seat. The first person is guaranteed to pick a seat that "works". The second oldest can sit to his right or left, since these five can sit either clockwise or counterclockwise. The probability of picking a seat that works is thus 2/4, or 1/2. The third oldest now has three chairs to choose from, one of which continues the progression in the order determined by the second person, for a probability of 1/3. This leaves two seats for the fourth oldest, or a 1/2 chance. The youngest would thus be guaranteed to sit in the right seat, since there is only one seat left. This gives 1 * 1/2 * 1/3 * 1/2 * 1 = 1/12, or 11:1 odds against.
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