MAGIC SQUARE: Calculate A-B*C
[7119] MAGIC SQUARE: Calculate A-B*C - The aim is to place the some numbers from the list (10, 11, 12, 15, 16, 17, 32, 33, 34, 46, 62) 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: 6
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MAGIC SQUARE: Calculate A-B*C

The aim is to place the some numbers from the list (10, 11, 12, 15, 16, 17, 32, 33, 34, 46, 62) 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: 6
#brainteasers #math #magicsquare
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A lawyer returns to his parked...

A lawyer returns to his parked BMW to find the headlights broken and his front bumper smashed.
There's no sign of the offending vehicle, but he's relieved to see that there's a note stuck under the windshield wiper.
The lawyer picks up the note. "Sorry. I just backed into your BMW. The witnesses who saw the accident are nodding and smiling at me because they think I'm leaving my name, address and other particulars. But I'm not."
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Julius von Sachs

Died 29 May 1897 at age 64 (born 2 Oct 1832). (Ferdinand Gustav) Julius von Sachs was a German botanist studying plant physiology, nutrition, and tropism (response to environmental stimuli). He discovered transpiration: that the absorbed water moves in tubes in the plant walls without the cooperation of living cells. In 1865, Sachs discovered chlorophyll, the green substance of plants; that it is located in special bodies within plant cells (later called chloroplasts); that glucose is made by the action of chlorophyll; and that the glucose is usually stored as starch. Sachs studied the formation of growth rings in trees, the role of tissue tension in promoting organ growth. He invented the clinostat to measure the effects of such external factors as light and gravity on the movement of growing plants. His work was a significant contribution to the knowledge of plant physiology during the second half of the 19th century.
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