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Brian Cox (physicist)

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Look at that! If you ever needed convincing that we live in the solar system, that we are on a ball of rock, orbiting around the Sun with other balls of rock, then look at that! That’s the solar system coming down and grabbing you by the throat.
--
Watching a solar eclipse in Wonders of the Solar System, episode 1

 
Brian Cox (physicist)

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If you could be alarmed into the semblance of modesty, you would charm everybody; but remember my joke against you about the Moon and the Solar System;—"Damn the solar system! bad light — planets too distant — pestered with comets — feeble contriviance; — could make a better with great ease."

 
Sydney Smith
 

If you look at the history of big obstacles in understanding our world, there's usually an intuitive assumption underlying them that's wrong. In the case of the Solar System it was intuitively obvious that the Earth was at the center of the Solar System and things moved around us, but that just turned out to be wrong. ... And it intuitively seems correct that the brain is just some sort of computer—it just seems natural. ... But it has undermined almost all of our work to build intelligent machines and understand thinking. It's just wrong ... the brain isn't like a computer at all.

 
Jeff Hawkins
 

Welcome to the early twenty-first century, human.
It’s night in Milton Keynes, sunrise in Hong Kong. Moore’s Law rolls inexorably on, dragging humanity toward the uncertain future. The planets of the solar system have a combined mass of approximately 2 x 1027 kilograms. Around the world, laboring women produce forty-five thousand babies a day, representing 1023 MIPS of processing power. Also around the world, fab lines casually churn out thirty million microprocessors a day, representing 1023 MIPS. In another ten months, most of the MIPS being added to the solar system will be machine-hosted for the first time. About ten years after that, the solar system’s installed processing power will nudge the critical 1 MIPS per gram threshold—one million instructions per second per gram of matter. After that, singularity—a vanishing point beyond which extrapolating progress becomes meaningless. The time remaining before the intelligence spike is down to single-digit years ...

 
Charles Stross
 

What preoccupies most scientists now is not how much they know compared to 50 years ago, though that is enormous as a difference, but how little they know compared to what they're finding out [...] For a few milliseconds really of cosmic time our species has lived on one very very small rock, in a very small solar system that's a part of a fantastically unimportant suburb, in one of an uncountable number of galaxies [...] Every single second since the big bang a star the size of our sun has blown up, gone to nothing [...] And indeed physicists now exist who can tell you the date on which our sun will follow suit [...] We know when it's [the world] coming to an end and we know how it will be, but we know something even more extraordinary which is the rate of expansion of this explosion we're looming through is actually speeding up. Our universe is flying apart further and faster than we thought it was [...] Everyone who studies it professionally finds it impossible to reconcile this extraordinarily destructive, chaotic, self-destructive process, to find in it the finger of god, to find in that the idea of a design. And it's not just because we know so little about it, it's because what we know about it that's essential doesn't seem as if it's the intended result brought about by a divine-benign creator who loves every single one of us living as we do on this tiny rock in this negligible suburb of the cosmos.

 
Christopher Hitchens
 

Efficiency is not the issue when you go solar. There is so much solar that all you have to do is invest in the non-recurring cost of more dishes to drive a solar-hydrogen economy at whatever efficiency it happens to sit at.

 
Derek Abbot
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