Philip Ball. Найдено 48 треков
The Water Kingdom: A Secret History of China 11
12. Everything you experience is a (partial) copy of what causes it
The Water Kingdom: A Secret History of China 1
13. Schrodinger's cat has had kittens
08. Not everything is knowable at once
19. Can we ever get to the bottom of it?
00. By way of introduction...
16. There is no other 'quantum' you
The Water Kingdom: A Secret History of China 3
The Water Kingdom: A Secret History of China 5
05. What 'happens' depends on what we find out about it
10. There is no 'spooky action at a distance'
02. Quantum mechanics is not really about the quantum
14. Quantum mechanics can be harnessed for technology
The Water Kingdom: A Secret History of China 2
11. The everyday world is what quantum becomes at human scales
The Water Kingdom: A Secret History of China 9
07. Whatever the question, the answer is 'Yes' (unless it's 'No')
The Water Kingdom: A Secret History of China 10
06. There are many ways of interpreting quantum theory (and none of them quite makes sense)
The Water Kingdom: A Secret History of China 4
18. The fundamental laws of quantum mechanics might be simpler than we imagine
The Water Kingdom: A Secret History of China 7
The Water Kingdom: A Secret History of China 8
The Water Kingdom: A Secret History of China 6
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
The Water Kingdom: A Secret History of China
03. Quantum objects are neither wave nor particle (but sometimes they might as well be)
04. Quantum particles aren't in two states at once (but sometimes they might as well be)
01. No one can say what quantum mechanics means (and this is a book about it)
15. Quantum computers don't necessarily perform 'many calculations at once'
17. Things could be even more 'quantum' than they are (so why aren't they)?
09. The properties of quantum objects don't have to be contained within the objects