![]() “Label-Free ‘Digital Detection’ of Single-Molecule DNA Hybridization with a Single Electron Transistor.” J AM CHEM SOC 128 (2006): 11346-11347. Presenting engineering fundamentals and biological applications in a unified way, this text provides students with the skills necessary to develop and critically analyze models of biological. “How do Site-specifc DNA-binding Proteins Find their Targets?” Nucleic Acids Research 32, no. Princeton, NJ: Princeton University Press, 1993. Presenting engineering fundamentals and biological applications in a unified way, this book provides learners with the skills necessary to develop and. Enter the email address you signed up with and well email you a reset link. “One-dimensional Random Walks.” In Random Walks in Biology. Solutions to transport phenomena (bird) second edition (full). New York, NY: Oxford University Press, 1998. “Appendix A, Tables A-1 through A-4 (Vector Identity summary).” In Analysis of Transport Phenomena. “Life at Low Reynolds Number.” American Journal of Physics 45, no. “Microfluidics: Fluid Physics at the Nanoliter Scale.” Reviews Of Modern Physics 77 (July 2005): 977-1026. Katz SUPPLEMENTAL: Biomedical Mass Transport and. Videos by the National Committee for Fluid Mechanics Films (NCFMF) This course is designed to deeply understand transport phenomena within a quantitative and. Jones: 2.1, 2.2 (up to section C), and 3.2 (sections A and B)ģ hour final exam (comprehensive of the course) during the finals week Jongyoon Han)Įlectrophoretic mobility of various biomolecules Part 4: Electrokinetics (Instructor: Prof. Solving the convection-diffusion equation in flow channels Relative importance of convection and diffusion TY & K: 6.4 and 6.7 (be prepared by reading 6.1-6.3)Įlectrical analogy to understanding cell surface binding Scott Manalis)ĭiffusion based analysis of DNA binding proteins H & M: Example 7.9.3 (from section 7.9, ignore time dependence) Laplace’s equation in spherical coordinate (example 7.9.3) Laplace’s equation in other coordinates (solving examples using MATLAB®) Laplace’s equation in rectangular coordinate (electrophoresis example) will rely on separation of variables Jongyoon Han)Įlectric and magnetic fields for biological systems (examples)ĮM field for biomedical systems (examples) ISBN: 9780195084948.įluid 7: Viscous-dominated flows, internal flowsįluid 10: Cellular fluid mechanics (guest lecture by Prof. “Stream Function.” Section 5.9 in Analysis of Transport Phenomena. Scott Manalis)Ĭonstitutive laws (mass and momentum conservation)įluid 4: Conservation of momentum (example)įluid 6: Flows with viscous and inertial effectsĭeen, W. New York, NY: Cambridge University Press, 2005. Understanding the dynamics of physical, chemical and biological processes that control heat, mass and momentum transport in an organism is extremely important. Physiochemical Hydrodynamics: An Introduction. Upper Saddle River, NJ: Prentice Hall, 1989. East Rutherford, NJ: Prentice Hall, 2003. Transport Phenomena in Biological Systems. Relevant Mathematical Concepts.This page includes a list of supplemental readings after the table of assigned readings. Transport of Drugs and Macromolecules in Tumors. Ligand-Receptor Kinetics on the Cell Surface and Molecular Transport within Cells. Oxygen Transport from the Lungs to the Tissues. Katz Pearson Prentice Hall, 2009 - Biological systems - 860 pages 0 Reviews Reviews aren't verified. Mass Transport and Biochemical Interactions. Transport Phenomena in Biological Systems George A. ![]() THE EFFECT OF MASS TRANSPORT UPON BIOCHEMICAL INTERACTIONS. Solvent and Solute Transport across the Kidney Glomerulus. Diffusion with Convection or Electrical Potentials. FUNDAMENTALS AND APPLICATIONS OF MASS TRANSPORT. Fluid Flow in the Circulation and Tissues. ![]() Macroscopic Form of Conservation Relations and Applications of Momentum Transport. ![]() Conservation Relations for Fluid Transport, Dimensional Analysis and Scaling. INTRODUCTION TO PHYSIOLOGICAL FLUID MECHANICS.
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