MAGIC SQUARE: Calculate A*B+C
[6463] MAGIC SQUARE: Calculate A*B+C - The aim is to place the some numbers from the list (5, 14, 17, 20, 22, 23, 28, 42, 45, 50, 71) 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: 18 - The first user who solved this task is Nasrin 24 T
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MAGIC SQUARE: Calculate A*B+C

The aim is to place the some numbers from the list (5, 14, 17, 20, 22, 23, 28, 42, 45, 50, 71) 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: 18
The first user who solved this task is Nasrin 24 T.
#brainteasers #math #magicsquare
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A blonde and a redhead met in ...

A blonde and a redhead met in a bar after work for a drink, and were watching the 6 O'clock news. A man was shown threatening to jump from the Brooklyn Bridge.
The blonde bet the redhead $50 that he wouldn't jump, and the redhead replied, 'I'll take that bet!'
Anyway, sure enough, he jumped, so the blonde gave the redhead the $50 she owed. The redhead said 'I can't take this, you're my friend.'
The blonde said 'No. A bet's a bet'.
So the redhead said 'Listen, I have to admit, I saw this on the 5 O'clock news, so I can't take your money'.
The blonde replied, 'Well, so did I, but I never thought he'd jump again!'
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Kunihiko Kodaira

Born 16 Mar 1915; died 26 Jul 1997 at age 82.Japanese mathematician who was awarded the Fields Medal in 1954 for his work in algebraic geometry and complex analysis. Kodaira's work includes applications of Hilbert space methods to differential equations which was an important topic in his early work and was largely the result of influence by Weyl. Through the influence of Hodge, he also worked on harmonic integrals and later he applied this work to problem in algebraic geometry. Another important area of Kodaira's work was to apply sheaves to algebraic geometry. In around 1960 he became involved in the classification of compact, complex analytic spaces. One of the themes running through much of his work is the Riemann-Roch theorem. He won the 1985 Wolf Prize.
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