MAGIC SQUARE: Calculate A-B-C
[8066] MAGIC SQUARE: Calculate A-B-C - The aim is to place the some numbers from the list (12, 13, 14, 19, 20, 21, 35, 39, 61, 62, 63, 95) into the empty squares and squares marked with A, B an C. Sum of each row and column should be equal. All the numbers of the magic square must be different. Find values for A, B, and C. Solution is A-B-C. - #brainteasers #math #magicsquare - Correct Answers: 0
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MAGIC SQUARE: Calculate A-B-C

The aim is to place the some numbers from the list (12, 13, 14, 19, 20, 21, 35, 39, 61, 62, 63, 95) into the empty squares and squares marked with A, B an C. Sum of each row and column should be equal. All the numbers of the magic square must be different. Find values for A, B, and C. Solution is A-B-C.
Correct answers: 0
#brainteasers #math #magicsquare
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Growing Wild

Here is this guy who really takes care of his body; he lifts weights and jogs five miles every day.

One morning, he looks into the mirror and admires his body. He notices that he is really sun tanned all over except one part and he decides to do something about it.

He goes to the beach, completely undresses and buries himself in the dand except for the one part sticking out.

Two little old ladies are strolling along the beach and one looks down and says, "There really is no justice in this world."

The other little old lady says, "What do you mean?"

The first little old lady says, "Look at that."

"When I was 10 years old, I was afraid of it."

"When I was 20 years old, I was curious about it."

"When I was 30 years old, I enjoyed it."

"When I was 40 years old, I asked for it."

"When I was 50 years old, I paid for it."

"When I was 60 years old, I prayed for it."

"When I was 70 years old, I forgot about it."

"And now that I'm 80, the damned things are growing wild!!"

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Richard Ewen Borcherds

Born 29 Nov 1959.British mathematician who won the Fields Medal in 1998 for his for his work in the fields of algebra and geometry, in particular for his proof of the so-called Moonshine conjecture. This conjecture had been formulated at the end of the '70s by the British mathematicians John Conway and Simon Norton and presents two mathematical structures in such an unexpected relationship that the experts gave it the name "Moonshine." In 1989, Borcherds was able to cast some more light on the mathematical background of this topic and to produce a proof for the conjecture. The Moonshine conjecture provides an interrelationship between the so-called "monster group" and elliptic functions.
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