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"Big Brother" means "a tyrannical government body that constantly monitors all its citizens." The term comes from the classic dystopian novel ''{{w|Nineteen Eighty-Four}}'' by George Orwell, wherein propaganda videos are narrated by an actor with the stage name of Big Brother and the dystopia's surveillance system is said to be monitored by Big Brother himself.
 
"Big Brother" means "a tyrannical government body that constantly monitors all its citizens." The term comes from the classic dystopian novel ''{{w|Nineteen Eighty-Four}}'' by George Orwell, wherein propaganda videos are narrated by an actor with the stage name of Big Brother and the dystopia's surveillance system is said to be monitored by Big Brother himself.
  
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[[Cueball]] has a discussion with Big Brother ("corporate surveillance state"), in which he mocks Big Brother's interest in the inconsequential activity of playing a video game (''Dwarf Fortress'' in particular) by drawing a parallel between Big Brother's omniscient surveillance of Cueball and Cueball's omniscient surveillance of the dwarves. Big Brother appears to be mortified when it realizes the accuracy of Cueball's comparison.
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[[Cueball]] has a discussion with Big Brother ("corporate surveillance state"), in which he mocks Big Brother's interest in the inconsequential activity of playing a video game ("Dwarf Fortress" in particular) by drawing a parallel between Big Brother's omniscient surveillance of Cueball and Cueball's omniscient surveillance of the dwarves. Big Brother appears to be mortified when it realizes the accuracy of Cueball's comparison.
  
 
Informally, a system exhibits ''Turing-completeness'' when it is theoretically capable of executing any algorithm. One of the simplest Turing-complete systems is the {{w|Turing machine}}, a device that manipulates symbols on a strip of tape according to a table of rules β€” it {{w|Church-Turing thesis|can be proven}} to have the same capabilities as any ordinary programming language. Other very simple systems include {{w|Rule 110}}, {{w|lambda calculus}}, {{w|Conway's game of life}}, and {{w|Brainfuck}}. The reason we don't work with these is because they're a real pain in the ass. Would you rather build a network of spaceships that collide with each other to simulate the successor function, or just write <tt>i := i + 1</tt>?
 
Informally, a system exhibits ''Turing-completeness'' when it is theoretically capable of executing any algorithm. One of the simplest Turing-complete systems is the {{w|Turing machine}}, a device that manipulates symbols on a strip of tape according to a table of rules β€” it {{w|Church-Turing thesis|can be proven}} to have the same capabilities as any ordinary programming language. Other very simple systems include {{w|Rule 110}}, {{w|lambda calculus}}, {{w|Conway's game of life}}, and {{w|Brainfuck}}. The reason we don't work with these is because they're a real pain in the ass. Would you rather build a network of spaceships that collide with each other to simulate the successor function, or just write <tt>i := i + 1</tt>?

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