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Ditemukan 19331 dokumen yang sesuai dengan query
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Ford, Andrew
Washington D.C: Island Press, 1999
363.7 FOR m
Buku Teks  Universitas Indonesia Library
cover
Luenberger, David G.
New York: John Wiley & Sons, 1979
515.35 LUE i
Buku Teks SO  Universitas Indonesia Library
cover
Borgers, Christoph
"This book is intended as a text for a one-semester course on mathematical
and computational neuroscience for upper-level undergraduate and first-year graduate
students of mathematics, the natural sciences, engineering, or computer science.
An undergraduate introduction to differential equations is more than enough
mathematical background. Only a slim, high school-level background in physics is
assumed and none in biology"
Switzerland: Springer International Publishing , 2017
e20528446
eBooks  Universitas Indonesia Library
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Deaton, Michael L.
New York: Springer, 2000
628 DEA d
Buku Teks SO  Universitas Indonesia Library
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Rosenberg, Ronald C.
New York: McGraw-Hill, 1983
620.1 ROS i
Buku Teks SO  Universitas Indonesia Library
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Shearer, J. Lowen
Reading, MA: Addison-Wesley, 1971
620 SHE i
Buku Teks SO  Universitas Indonesia Library
cover
Sneppen, Kim
""Reflecting the major advances that have been made in the field over the past decade, this book provides an overview of current models of biological systems. The focus is on simple quantitative models, highlighting their role in enhancing our understanding of the strategies of gene regulation and dynamics of information transfer along signalling pathways, as well as in unravelling the interplay between function and evolution. The chapters are self-contained, each describing key methods for studying the quantitative aspects of life through the use of physical models. They focus, in particular, on connecting the dynamics of proteins and DNA with strategic decisions on the larger scale of a living cell, using E. coli and phage lambda as key examples. Encompassing fields such as quantitative molecular biology, systems biology and biophysics, this book will be a valuable tool for students from both biological and physical science backgrounds"--"
Cambridge, UK: Cambridge University Press, 2014
570.15 SNE m
Buku Teks SO  Universitas Indonesia Library
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Zohdi, Tarek I.
"The objective of this monograph is to provide a concise introduction tothe dynamics of systems comprised of charged small-scale particles. Flowing, small-scale, particles ("particulates'') are ubiquitous in industrial processes and in the natural sciences. Applications include electrostatic copiers, inkjet printers, powder coating machines, etc., and a variety of manufacturing processes. Due to their small-scale size, external electromagnetic fields can be utilized to manipulate and control charged particulates in industrial processes in order to achieve results that are not possible by purely mechanical means alone. A unique feature of small-scale particulate flows is that they exhibit a strong sensitivity to interparticle near-field forces, leading to nonstandard particulate dynamics, agglomeration and cluster formation, which can strongly affect manufactured product quality. This monograph also provides an introduction to the mathematically-related topic of the dynamics of swarms of interacting objects, which has gained the attention of a number of scientific communities. In summary, the following topics are discussed in detai l: (1) Dynamics of an individual charged particle, (2) Dynamics of rigid clusters of charged particles, (3) Dynamics of flowing charged particles, (4) Dynamics of charged particle impact with electrified surfaces and (5) An introduction to the mechanistic modeling of swarms. "
Heidelberg : [Springer, Springer], 2012
e20398201
eBooks  Universitas Indonesia Library
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Weber, Walter J.
New York: Wiley-Interscience, 2001
628 WEB e
Buku Teks SO  Universitas Indonesia Library
cover
Weijiu, Liu
"This textbook contains the essential knowledge in modeling, simulation, analysis, and applications in dealing with biological cellular control systems. In particular, the book shows how to use the law of mass balance and the law of mass action to derive an enzyme kinetic model, the Michaelis-Menten function or the Hill function, how to use a current-voltage relation, Nernst potential equilibrium equation, and Hodgkin and Huxley's models to model an ionic channel or pump, and how to use the law of mass balance to integrate these enzyme or channel models into a complete feedback control system. The book also illustrates how to use data to estimate parameters in a model, how to use MATLAB to solve a model numerically, how to do computer simulations, and how to provide model predictions. Furthermore, the book demonstrates how to conduct a stability and sensitivity analysis on a model."
Milan: Springer, 2012
e20420468
eBooks  Universitas Indonesia Library
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