Living at Micro Scale: The Unexpected Physics of Being Small

Living at Micro Scale: The Unexpected Physics of Being Small

by David B. Dusenbery
ISBN-10:
0674060210
ISBN-13:
9780674060210
Pub. Date:
03/04/2011
Publisher:
Harvard University Press
ISBN-10:
0674060210
ISBN-13:
9780674060210
Pub. Date:
03/04/2011
Publisher:
Harvard University Press
Living at Micro Scale: The Unexpected Physics of Being Small

Living at Micro Scale: The Unexpected Physics of Being Small

by David B. Dusenbery

Paperback

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Overview

Kermit the Frog famously said that it isn’t easy being green, and in Living at Micro Scale David Dusenbery shows that it isn’t easy being small—existing at the size of, say, a rotifer, a tiny multicellular animal just at the boundary between the visible and the microscopic. “Imagine,” he writes, “stepping off a curb and waiting a week for your foot to hit the ground.” At that scale, we would be small enough to swim inside the letter O in the word “rotifer.” What are the physical consequences of life at this scale? How do such organisms move, identify prey and predators and (if they’re so inclined) mates, signal to one another, and orient themselves?

In clear and engaging prose, Dusenbery uses straightforward physics to demonstrate the constraints on the size, shape, and behavior of tiny organisms. While recounting the historical development of the basic concepts, he unearths a corner of microbiology rich in history, and full of lessons about how science does or does not progress. Marshalling findings from different fields to show why tiny organisms have some of the properties they are found to have, Dusenbery shows a science that doesn’t always move triumphantly forward, and is dependent to a great extent on accident and contingency.


Product Details

ISBN-13: 9780674060210
Publisher: Harvard University Press
Publication date: 03/04/2011
Pages: 448
Sales rank: 839,003
Product dimensions: 6.10(w) x 9.10(h) x 1.20(d)

About the Author

David B. Dusenbery is Professor of Biology, Emeritus, Georgia Institute of Technology.

What People are Saying About This

I have long used Edward M. Purcell's famous essay to draw my students to the fascinating blend of biology, mathematics, and physics that deals with low Reynolds numbers. Now David Dusenbery's Living at Micro Scale provides me with a wealth of new material that combines simple mathematics, rigorous physics, and interesting microbiology. It will be indispensable to my teaching. Dusenbery uses evocative illustrations, and many lucid derivations and useful tables that will greatly increase the variety of examples that I can raise with undergraduates regarding microbe size, shape, propulsion, sensory ecology and encounter. The volume is sure to become a well-worn reference volume on my shelf, and one that will fuel many graduate seminars.

Terry Snell

Using his deep knowledge of the principles of both physics and biology, Dusenbery provides novel insights into why biological systems are organized as they are. He has the uncanny ability to synthesize information that is common knowledge in physics, make a few simple calculations, and explain processes that have long puzzled biologists. Dusenbery shows how the tools of the physicist-- generalization and approximation-- and physics' rich repertoire of models can inform and advance biology. Biologists would do well to listen.
Terry Snell, Professor of Biology, Georgia Tech

Steven Vogel

Of course biologists know that physical law constrains biological design. But the subtlety, the pervasiveness, the number and interrelationships of relevant factors-- these come as a splendid revelation in David Dusenbery's Living at Micro Scale. One is left wondering how we biologists could have managed to ignore them, and left grateful to Dusenbery for this enlightening account.
Steven Vogel, Duke University, author of Comparative Biomechanics: Life's Physical World

Peter A. Jumars

I have long used Edward M. Purcell's famous essay to draw my students to the fascinating blend of biology, mathematics, and physics that deals with low Reynolds numbers. Now David Dusenbery's Living at Micro Scale provides me with a wealth of new material that combines simple mathematics, rigorous physics, and interesting microbiology. It will be indispensable to my teaching. Dusenbery uses evocative illustrations, and many lucid derivations and useful tables that will greatly increase the variety of examples that I can raise with undergraduates regarding microbe size, shape, propulsion, sensory ecology and encounter. The volume is sure to become a well-worn reference volume on my shelf, and one that will fuel many graduate seminars.
Peter A. Jumars, Darling Marine Center, University of Maine

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