CINEMANIA: Guess the movie title
[2881] CINEMANIA: Guess the movie title - See negative of movie scene and guess the title. Length of words in solution: 3,5,4 - #brainteasers #movie #film #cinemania - Correct Answers: 35 - The first user who solved this task is On On Lunarbasil
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CINEMANIA: Guess the movie title

See negative of movie scene and guess the title. Length of words in solution: 3,5,4
Correct answers: 35
The first user who solved this task is On On Lunarbasil.
#brainteasers #movie #film #cinemania
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The big squeeze

The local bar was so sure that its bartender was the strongest man around that they offered a standing $1000 bet. The bartender would squeeze a lemon until all the juice ran into a glass, and hand the lemon to a patron. Anyone who could squeeze one more drop of juice out would win the money. Many people had tried over time (weight-lifters, longshoremen, etc.) but nobody could do it.

One day this scrawny little man came into the bar, wearing thick glasses and a polyester suit, and said in a tiny squeaky voice " I'd like to try the bet" After the laughter had died down, the bartender said OK, grabbed a lemon, and squeezed away. Then he handed the wrinkled remains of the rind to the little man. But the crowd's laughter turned to total silence as the man clenched his fist around the lemon and six drops fell into the glass.

As the crowd cheered, the bartender paid the $1000, and asked the little man "what do you do for a living? Are you a lumberjack, a weight-lifter, or what?"

The man replied "I work for the IRS."

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Karl Schwarzschild

Died 11 May 1916 at age 42 (born 9 Oct 1873).German theoretical astrophysicist who made both practical and theoretical contributions to 20th-century astronomy. He developed the use of photography for measuring variable stars. He also investigated the geometrical aberrations of optical systems using ray optics by introducing a perturbation equation which he called the Seidel Eikonal. While on the Russian front during military service, he computed the first two exact solutions of the Einstein Field Equations of General Relativity, one in static isotropic empty space surrounding a massive body (such as a "black hole"), and one inside a spherically symmetric body of constant density - work which led directly to modern research on black holes.
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