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Enthusiasts look forward to a time when tiny machines reassemble matter and process information with unparalleled power and precision. But is their vision realistic? Where is the science heading? As nanotechnology (a new technology that many believe will transform society in the next one hundred years) rises higher in the news agenda and popular consciousness, there is a real need for a book which discusses clearly the science on which this technology will be based. Whilst it is most easy to simply imagine these tiny machines as scaled-down versions of the macroscopic machines we are all familiar with, the way things behave on small scales is quite different to the way they behave on large scales. Engineering on the nanoscale will use very different principles to those we are used to in our everyday lives, and the materials used in nanotehnology will be soft and mutable, rather than hard and unyielding. "Soft Machines" explains in a lively and very accessible manner why the nanoworld is so different to the macro-world which we are all familiar with. Why does nature engineer things in the way it does, and how can we learn to use these unfamiliar principles to create valuable new materials and artefacts which will have a profound effect on medicine, electronics, energy and the environment in the twenty-first century. With a firmer understanding of the likely relationship between nanotechnology and nature itself, we can gain a much clearer notion of what dangers this powerful technology may potentially pose, as well as come to realise that nanotechnology will have more in common with biology than with conventional engineering.
This book investigates whether the popular vision of nanotechnology as a collection of tiny, rigid machines is scientifically realistic or fundamentally flawed. Richard A. L. Jones, a professor of physics, utilizes his expertise in soft condensed matter to argue that the nanoworld operates under physical principles distinct from the macroscopic world. He posits that successful nanotechnology will mirror biological systems—characterized by soft, mutable materials—rather than traditional mechanical engineering.
What You Will Find
Scope Limits
Experts and readers frequently cite this work as a foundational text for understanding the physical constraints of nanotechnology. It is widely praised for bridging the gap between complex physics and accessible scientific communication for a general audience.
Page Count:
218
Publication Date:
2008-01-01
Publisher:
Oxford University Press
ISBN-10:
0191567248
ISBN-13:
9780191567247
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