Find the right combination
[4835] Find the right combination - The computer chose a secret code (sequence of 4 digits from 1 to 6). Your goal is to find that code. Black circles indicate the number of hits on the right spot. White circles indicate the number of hits on the wrong spot. - #brainteasers #mastermind - Correct Answers: 23 - The first user who solved this task is Djordje Timotijevic
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Find the right combination

The computer chose a secret code (sequence of 4 digits from 1 to 6). Your goal is to find that code. Black circles indicate the number of hits on the right spot. White circles indicate the number of hits on the wrong spot.
Correct answers: 23
The first user who solved this task is Djordje Timotijevic.
#brainteasers #mastermind
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Quickie

A man goes into a restaurant where all the waitresses are gorgeous.

A particularly voluptuous waitress wearing a very short skirt comes to his table and asks, "What would you like, sir?"

He looks at the menu, scans her beautiful frame top to bottom, and then answers, "A quickie." The waitress turns and walks away in disgust.

After she regains her composure she returns and asks again, "What would you like, sir?" Again the man thoroughly checks her out and again answers, "A quickie, please."

This time her anger takes over, she reaches over and slaps him across the face with a resounding SMACK! and storms away. A man sitting at the next table then leans over and whispers, "Um, I think it's pronounced 'quiche.'"

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Sir John C. Eccles

Born 27 Jan 1903; died 2 May 1997 at age 94. John Carew Eccles was an Australian physiologist who shared, (with Alan Hodgkin and Andrew Huxley) the 1963 Nobel Prize for Physiology or Medicine for his discovery of the chemical means by which impulses are communicated or repressed by nerve cells. He also showed how signals pass between nerves and muscles. A nerve cell that is switched on by receiving a signal passes a chemical on to the next cell in line. This chemical expands minute openings in cell membranes, allowing ions to flood inside, reversing the electrical charge of the cell. This activity is repeated along the chain of cells, permitting transmission of the original impulse through the body. Eccles observed living cells in action by planting exceptionally tiny electrodes in them.
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