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" "Today, I can read an entire human genome of 25,000 genes in a few days for less than a hundred dollars on a candy bar–sized DNA sequencer called a MinION that I plug into my laptop. And that's for a fairly complete readout of a human genome, plus the DNA methyl marks that tell you your biological age.
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The problem is not just population, it's consumption. And it's not just consumption, it's waste. In comes the food; out goes the effluent. In come the fossil fuels; out go the carbon emissions. In come the petrochemicals; out goes the plastic. On average, Americans consume more than three times the amount of food they need to survive and about 250 times as much water.14 In return, they produce 4.4 pounds of trash each day, recycling or composting only about of a third of it.15 Thanks to things such as cars, planes, big homes, and power-hungry clothes dryers,16 the annual carbon dioxide emissions of an average American are five times as high as the global average. Even the "floor" — below which even monks living in American monasteries typically do not go — is twice the global average.
Analog data are superior for this job because they can be changed back and forth with relative ease whenever the environment within or outside the cell demands it, and they can store an almost unlimited number of possible values, even in response to conditions that have never been encountered before.25 The unlimited number of possible values is why many audiophiles still prefer the rich sounds of analog storage systems. But even though analog devices have their advantages, they have a major disadvantage. In fact, it's the reason we've moved from analog to digital. Unlike digital, analog information degrades over time — falling victim to the conspiring forces of magnetic fields, gravity, cosmic rays, and oxygen. Worse still, information is lost as it's copied. No one was more acutely disturbed by the problem of information loss than Claude Shannon, an electrical engineer from the Massachusetts Institute of Technology (MIT) in Boston.