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D I F Lesson 12: Futurism
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Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Dec 27, 2015

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Page 1: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

D I FLesson 12:Futurism

Page 2: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Moore’s Law

The number of transistors that can be placed inexpensively on an integrated circuit doubles

every two years.

Page 3: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Moore’s Law: Qubits

Not Just 1 and 0, but Everything In-Between

Page 4: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Solving Games

Tic Tac Toe

Page 5: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Solved Games

Checkers: Chinookhttp://webdocs.cs.ualberta.ca/~chinook/

Page 6: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Unsolved Games

Chess

Page 7: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Unsolved Games

Go

Page 8: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Unsolved Games: Super Mario

Page 9: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Human VS Machine: John Henry

Fought the Steam-Powered Hammer and Won

Page 10: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Artificial Intelligence

Page 11: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Turing Test

Can you tell the difference between a human and a computer?

Page 12: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Completely Automated Public Turing Test to tell Computers and Humans Apart

Page 13: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

The Uncanny Valley

http://cubo.cc

Page 14: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

The Uncanny Valley

Page 15: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Eliza Chatbot

http://www.masswerk.at/elizabot/

Page 16: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

AliceBot

Alicebot.org

Page 17: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Cyc

cyc.com

Page 18: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

The Semantic Web

H. RES. 558http://thomas.loc.gov/home/gpoxmlc111/hr558_ih.xml

Page 19: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

The Semantic Web

H. RES. 558http://thomas.loc.gov/home/gpoxmlc111/hr558_ih.xml

Page 20: Lesson 12: Futurism. Moore’s Law The number of transistors that can be placed inexpensively on an integrated circuit doubles every two years.

Wolfram Alpha