000 03207nam a2200421 i 4500
001 CR9781139794787
003 UkCbUP
005 20240730160751.0
006 m|||||o||d||||||||
007 cr||||||||||||
008 120926s2014||||enk o ||1 0|eng|d
020 _a9781139794787 (ebook)
020 _z9781107037694 (hardback)
040 _aUkCbUP
_beng
_erda
_cUkCbUP
050 0 0 _aQP90.5
_b.J64 2014
082 0 0 _a612.0
_219
100 1 _aJohnson, Mark,
_eauthor.
_974564
245 1 0 _aProblems for biomedical fluid mechanics and transport phenomena /
_cMark Johnson, Northwestern University, Illinois, C. Ross Ethier, Georgia Institute of Technology and emory University.
246 3 _aProblems for Biomedical Fluid Mechanics & Transport Phenomena
264 1 _aCambridge :
_bCambridge University Press,
_c2014.
300 _a1 online resource (x, 170 pages) :
_bdigital, PDF file(s).
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aCambridge texts in biomedical engineering
500 _aTitle from publisher's bibliographic system (viewed on 05 Oct 2015).
505 0 _aProblem solving -- Conservation of mass and the Reynolds transport theorem -- Steady and unsteady Bernoulli equation and momentum conservation -- Viscous flow -- Momentum boundary layers -- Piping systems, friction factors, and drag coefficients -- Problems involving surface tension -- Non-Newtonian blood flow -- Dimensional analysis -- Statistical mechanics -- Steady diffusion and conduction -- Unsteady diffusion and conduction -- Convention of mass and heat -- Concentration and thermal boundary layers -- Mass and heat transfer coefficients -- Osmotic pressure.
520 _aHow does one deal with a moving control volume? What is the best way to make a complex biological transport problem tractable? Which principles need to be applied to solve a given problem? How do you know if your answer makes sense? This unique resource provides over two hundred well-tested biomedical engineering problems that can be used as classroom and homework assignments, quiz material and exam questions. Questions are drawn from a range of topics, covering fluid mechanics, mass transfer and heat transfer applications. Driven by the philosophy that mastery of biotransport is learned by practice, these problems aid students in developing the key skills of determining which principles to apply and how to apply them. Each chapter starts with basic problems and progresses to more difficult questions. Lists of material properties, governing equations and charts provided in the appendices make this a fully self-contained work. Solutions are provided online for instructors.
650 0 _aBody fluid flow.
_974565
650 0 _aFluid mechanics.
_92810
650 0 _aBody fluid flow
_xProblems exercises, etc.
_974566
650 0 _aFluid mechanics
_vProblems, exercises, etc.
_918845
700 1 _aEthier, Christopher Ross,
_d1959-
_eauthor.
_974567
776 0 8 _iPrint version:
_z9781107037694
830 0 _aCambridge texts in biomedical engineering.
_968122
856 4 0 _uhttps://doi.org/10.1017/CBO9781139794787
942 _cEBK
999 _c84165
_d84165