Chess Knight Move
[5339] Chess Knight Move - Find the title of novel, using the move of a chess knight. First letter is A. Length of words in solution: 4,8. - #brainteasers #wordpuzzles #chessknightmove - Correct Answers: 22 - The first user who solved this task is Djordje Timotijevic
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Chess Knight Move

Find the title of novel, using the move of a chess knight. First letter is A. Length of words in solution: 4,8.
Correct answers: 22
The first user who solved this task is Djordje Timotijevic.
#brainteasers #wordpuzzles #chessknightmove
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There was a farmer who grew wa...

There was a farmer who grew watermelons. He was doing pretty well, but he was disturbed by some local kids who would sneak into his watermelon patch at night and eat his watermelons.
After some careful thought, he came up with a clever idea that he thought would scare the kids away for sure. He made up a sign and posted it in the field. The next night, the kids showed up and they saw the sign which read, "Warning! One of the watermelons in this field has been injected with cyanide."
The kids ran off, made up their own sign and posted it next to the farmer's sign. When the farmer returned, he surveyed the field. He noticed that no watermelons were missing, but the sign next to his read, "Now there are two!"
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Kenneth Geddes Wilson

Born 8 Jun 1936.American physicist who was awarded the 1982 Nobel Prize for Physics for his development of a general procedure for constructing improved theories concerning the transformations of matter called continuous, or second-order, phase transitions. These take place at characteristic temperatures (or pressures), but unlike first-order transitions they occur throughout the entire volume of a material as soon as that temperature (called the critical point) is reached. One example of such a transition is the complete loss of ferromagnetic properties of certain metals when they are heated to their Curie points (about ºC for iron). Wilson's work provided a mathematical strategy for constructing theories that could apply to physical systems near the critical point.
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