MAGIC SQUARE: Calculate A*B+C
[5726] MAGIC SQUARE: Calculate A*B+C - The aim is to place the some numbers from the list (15, 22, 23, 25, 29, 32, 33, 37, 38, 39, 60, 61, 67) 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: 16 - The first user who solved this task is Djordje Timotijevic
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MAGIC SQUARE: Calculate A*B+C

The aim is to place the some numbers from the list (15, 22, 23, 25, 29, 32, 33, 37, 38, 39, 60, 61, 67) 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: 16
The first user who solved this task is Djordje Timotijevic.
#brainteasers #math #magicsquare
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A man went into a local tavern...

A man went into a local tavern and took a seat at the bar next to a women patron.
He turned to her and said, "This is a special day, I'm celebrating."
"What a coincidence," said the woman, "I'm celebrating, too". She clinked glasses with him and asked, "What are you celebrating?"
"I'm a chicken farmer," he replied. "For years all my hens were infertile, but today they're finally fertile."
"What a coincidence, the woman said. "My husband and I have been trying to have a child. Today, my gynecologist told me I'm pregnant! How did your chickens become fertile?" she asked.
"I switched cocks," he replied.
"What a coincidence," she said.
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Charles Alfred Coulson

Born 13 Dec 1910; died 7 Jan 1974 at age 63. British theoretical chemist known for the application of molecular orbital theory to chemical bonding, the electronic structures of molecules and the concept of partial valency. He developed many mathematical techniques for solving chemical and physical problems. His molecular orbital theory treats a molecule as a whole, and extends atomic quantum theory with “allowed” states of electrons associated with two or more atomic nuclei. With this approach, he explained the structure of benzene and other conjugated systems, and using what he called partial valency, he described the bonding in such compounds as diborane. After writing on Waves (1941) and Electricity (1941), his book Valence (1952) was highly influential. He also wrote on reconciling scientific and religious views, believing religious faith was an essential in the pursuit of science.«
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