000 02320nam a22003254a 4500
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008 120425s2011 nyua b 001 0 eng
020 _a9780815342120 (hbk.)
_cRM247.20
020 _a0815342128 (hbk.)
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040 _aDLC
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090 _aQH509.G756
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100 1 _aGrodzinsky, Alan J.
245 1 0 _aFields, forces, and flows in biological systems /
_cAlan J Grodzinsky ; with the technical and editorial assistance of Eliot H. Frank.
260 _aNew York :
_bGarland Science,
_c2011.
300 _axii, 308 p. :
_bill. ;
_c29 cm.
504 _aIncludes bibliographical references and index.
520 _a'Fields, Forces, and Flows in Biological Systems describes the fundamental driving forces for mass transport, electric current, and fluid flow as they apply to the biology and biophysics of molecules, cells, tissues, and organs. Basic mathematical and engineering tools are presented in the context of biology and physiology.The chapters are structured in a framework that moves across length scales from molecules to membranes to tissues. Examples throughout the text deal with applications involving specific biological tissues, cells, and macromolecules. In addition, a variety of applications focus on sensors, actuators, diagnostics, and microphysical measurement devices (e.g., bioMEMs/NEMs microfluidic devices) in which transport and electrokinetic interactions are critical.This textbook is written for advanced undergraduate and graduate students in biological and biomedical engineering and will be a valuable resource for interdisciplinary researchers including biophysicists, physical chemists, materials scientists, and chemical, electrical, and mechanical engineers seeking a common language on the subject'--Provided by publisher.
650 0 _aBiological transport.
650 0 _aBiological systems.
_962947
700 1 _aFrank, Eliot H.
907 _a.b15341239
_b2021-05-28
_c2019-11-12
942 _c01
_n0
_kQH509.G756
914 _avtls003498366
990 _azsz
991 _aFakulti Sains dan Teknologi
998 _at
_b2012-12-04
_cm
_da
_feng
_gnyu
_y0
_z.b15341239
999 _c517895
_d517895