MAGIC SQUARE: Calculate A+B+C
[8504] MAGIC SQUARE: Calculate A+B+C - The aim is to place the some numbers from the list (2, 5, 6, 8, 17, 18, 20, 35, 36, 38) 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 (2, 5, 6, 8, 17, 18, 20, 35, 36, 38) 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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Thanksgiving Weather Forecast

In the pre-Thanksgiving rush, we have received an early weather report from our in-house weather reporters. This is one you should be sure to email to your Mom. Turkeys will thaw in the morning, then warm in the oven to an afternoon high near 190F. The kitchen will turn hot and humid, and if you bother the cook, be ready for a severe squall or cold shoulder.

During the late afternoon and evening, the cold front of a knife will slice through the turkey, causing an accumulation of one to two inches on plates. Mashed potatoes will drift across one side, while cranberry sauce creates slippery spots on the other. Please pass the gravy.

A weight watch and indigestion warning have been issued for the entire area, with increased stuffiness around the beltway. During the evening, the turkey will diminish and taper off to leftovers, dropping to a low of 34F in the refrigerator.

Looking ahead to Friday and Saturday, high pressure to eat sandwiches will be established. Flurries of leftovers can be expected both days with a 50 percent chance of scattered soup late in the day. We expect a warming trend where soup develops. By early next week, eating pressure will be low as the only wish left will be the bone.

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Antiproton

In 1955, a new atomic subparticle called a negative proton (antiproton) was discovered at U.C. Berkeley. The hunt for antimatter began in earnest in 1932, with the discovery of the positron, a particle with the mass of an electron and a positive charge. However, creating an antiproton would be far more difficult since it needs nearly 2,000 times the energy. In 1955, the most powerful "atom smasher" in the world, the Bevatron built at Berkeley could provide the required energy. Detection was accomplished with a maze of magnets and electronic counters through which only antiprotons could pass. After several hours of bombarding copper with protons accelerated to 6.2 billion electron volts of energy, the scientists counted a total of 60 antiprotons.[Image: The first annihilation star, Faustina, of an antiproton found in film exposed by the Berkeley scientists, 1955]
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