Find a famous person
[4627] Find a famous person - Find the first and the last name of a famous person. Text may go in all 8 directions. Length of words in solution: 7,7. - #brainteasers #wordpuzzles - Correct Answers: 24 - The first user who solved this task is Djordje Timotijevic
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Find a famous person

Find the first and the last name of a famous person. Text may go in all 8 directions. Length of words in solution: 7,7.
Correct answers: 24
The first user who solved this task is Djordje Timotijevic.
#brainteasers #wordpuzzles
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She doesn’t trust easily

She doesn’t trust easily- you can see that in the distance creates between herself and around her, but she has much love to offer, and you can see it in the kindness that’s in the smiles she gives out to everyone around her. She has millions of chaotic galaxies of thoughts, thousands of tangled up worlds of words and places in her mind, and you can see it in the way her eyes always seem lost, like they are somewhere else. She always wants to be somewhere else, it shows in the way she’s always rushing and moving, the way she’s always restless. Life never went easy on her, and she didn’t go easy on herself either. She is strong and you can see it in her eyes, you can sense it in her voice. She believes that her body can physically rebuild and heal itself. I think that’s because she knew how to recover by herself after life had broken her. She knows how it’s like to be under-appreciated. So if you can’t see the beauty in her quirks, if you don’t think that maybe she might be a little piece of magic, don’t you dare and say that she is just a girl; because she’s a . ~ Author Unknown
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Martin Rodbell

Died 7 Dec 1998 at age 73 (born 1 Dec 1925).American biochemist who was awarded the 1994 Nobel Prize for Physiology or Medicine for his discovery in the 1960s of natural signal transducers called G-proteins that help cells in the body communicate with each other. He shared the prize with Alfred G. Gilman, who later proved Rodbell's hypothesis, by isolating the G-protein, which is so named because it binds to nucleotides called guanosine diphosphate and guanosine triphosphate, or GDP and GTP. Prior to Rodbell's research, scientists believed that only two substances—a hormone receptor and an interior cell enzyme—were responsible for cellular communication. Rodbell, however, discovered that the G-protein acted as an intermediate signal transducer between the two.
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