WY DO YOU ALLED HYPER EE I HAVE A BROWN FACE WITH LOTS OF ANCE BROWN FACE WITH LOTS OF ANCE LOTS OF ANCE RIDDLES WITH ANSWERS TO SOLVE - PUZZLES & BRAIN TEASERS

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Riddles and Answers © 2024

Crawling In The Grass

Hint:
A Girl Scout who has lost her cookie.
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What You Use To See

Hint:
An eyeball
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Here To Make You Happy

Hint:
I am a cake
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A Tank Without A Military

Hint:
Toilet
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Almond Joy And Mounds

Hint:
Its a coconut
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Growing On A Palm Tree

Hint:
Coconut
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I'm Not A Dog

Hint:
I am a coconut
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Meeting In The Office

Hint:
A clock
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Throwing A Basketball Riddle

Hint:
He threw the ball straight up in the air.
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Born In Mourning

Hint:
A tombstone
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Mortal Privation Riddle

Hint:
A tombstone
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Lazily In The Sun

Hint:
A daisy
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Roll The Dice

Hint: What will happen if there are 6 gamblers, each of whom bet on a different number?
It's a fair game. If there are 6 gamblers, each of whom bet on a different number, the dealer will neither win nor lose on each deal.

If he rolls 3 different numbers, e.g. 1, 2, 3, the three gamblers who bet 1, 2, 3 each wins $1 while the three gamblers who bet 4, 5, 6 each loses $1.

If two of the dice he rolls show the same number, e.g. 1, 1, 2, the gambler who bet 1 wins $3, the gambler who bet 2 wins $1, and the other 4 gamblers each loses $1.

If all 3 dice show the same number, e.g. 1, 1, 1, the gambler who bet 1 wins $5, and the other 5 gamblers each loses $1.

In each case, the dealer neither wins nor loses. Hence it's a fair game.
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The Blue And Red Dice Riddle

Hint:
Each die has 6 faces. When two dice are thrown, there are 36 equally possible results. For chances to be even, there must be 18 ways of getting the same color on top. Let X be the number of red faces on the second die. We have: 18 = 5X + 1(6 - X)

X = 3

The second die must have 3 red faces and 3 blue faces.
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Blue Eyes Riddle

Hint: Given my brother's blue eyes, what are the odds on my pair of eye-color genes?
1 in 3.

Since my brother has blue eyes (bb), both of my parents carry one brown and one blue gene (Bb). The three possibilities for my genotype, equally likely, are BB, Bb, and bB. Thus, there is a 2/3 chance that I carry a blue gene.

If I carry a blue gene, there is a 50% chance I will pass it on to my first child (and, obviously, 0% if I carry two brown genes).
Since my child will certainly get a blue gene from my wife, my gene will determine the eye color.

Multiplying the probabilities of those two independent events, there is a chance of 1/2 x 2/3 = 1/3 of my passing on a blue gene.
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