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Difference equations --- Differential equations, Linear --- Equations aux différences --- Equations différentielles linéaires --- 517.9 --- 519.7 --- System analysis --- Transformations (Mathematics) --- 681.3*G17 --- Algorithms --- Differential invariants --- Geometry, Differential --- Network theory --- Systems analysis --- System theory --- Mathematical optimization --- Linear differential equations --- Linear systems --- Calculus of differences --- Differences, Calculus of --- Equations, Difference --- Differential equations. Integral equations. Other functional equations. Finite differences. Calculus of variations. Functional analysis --- Mathematical cybernetics --- Ordinary differential equations: boundary value problems; convergence and stability; error analysis; initial value problems; multistep methods; single step methods; stiff equations (Numerical analysis) --- Difference equations. --- Differential equations, Linear. --- System analysis. --- Transformations (Mathematics). --- 681.3*G17 Ordinary differential equations: boundary value problems; convergence and stability; error analysis; initial value problems; multistep methods; single step methods; stiff equations (Numerical analysis) --- 519.7 Mathematical cybernetics --- 517.9 Differential equations. Integral equations. Other functional equations. Finite differences. Calculus of variations. Functional analysis --- Equations aux différences --- Equations différentielles linéaires --- Network analysis --- Network science
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This lucid and balanced introduction for first year engineers and applied mathematicians conveys the clear understanding of the fundamentals and applications of calculus, as a prelude to studying more advanced functions. Short and fundamental diagnostic exercises at the end of each chapter test comprehension before moving to new material.Provides a clear understanding of the fundamentals and applications of calculus, as a prelude to studying more advanced functionsIncludes short, useful diagnostic exercises at the end of each chapter
Calculus. --- Mathematical analysis. --- 517.1 Mathematical analysis --- Mathematical analysis --- Analysis (Mathematics) --- Fluxions (Mathematics) --- Infinitesimal calculus --- Limits (Mathematics) --- Functions --- Geometry, Infinitesimal --- 517.97 --- 517.97 Calculus of variations. Mathematical theory of control --- Calculus of variations. Mathematical theory of control
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This text for advanced undergraduates and graduates reading applied mathematics, electrical, mechanical, or control engineering, employs block diagram notation to highlight comparable features of linear differential and difference equations, a unique feature found in no other book. The treatment of transform theory (Laplace transforms and z-transforms) encourages readers to think in terms of transfer functions, i.e. algebra rather than calculus. This contrives short-cuts whereby steady-state and transient solutions are determined from simple operations on the transfer functions.
Differential equations, Linear. --- Difference equations. --- System analysis. --- Transformations (Mathematics) --- Algorithms --- Differential invariants --- Geometry, Differential --- Network analysis --- Network science --- Network theory --- Systems analysis --- System theory --- Mathematical optimization --- Calculus of differences --- Differences, Calculus of --- Equations, Difference --- Linear differential equations --- Linear systems --- 517.95 --- 517.95 Partial differential equations --- Partial differential equations --- Great Britain --- Economic policy
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This text for advanced undergraduates and graduates reading applied mathematics, electrical, mechanical, or control engineering, employs block diagram notation to highlight comparable features of linear differential and difference equations, a unique feature found in no other book. The treatment of transform theory (Laplace transforms and z-transforms) encourages readers to think in terms of transfer functions, i.e. algebra rather than calculus. This contrives short-cuts whereby steady-state and transient solutions are determined from simple operations on the transfer functions.
Economics --- Didactic evaluation --- Differential equations, Linear. --- Difference equations. --- System analysis. --- Transformations (Mathematics) --- Great Britain --- Economic policy
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This lucid and balanced introduction for first year engineers and applied mathematicians conveys the clear understanding of the fundamentals and applications of calculus, as a prelude to studying more advanced functions. Short and fundamental diagnostic exercises at the end of each chapter test comprehension before moving to new material.Provides a clear understanding of the fundamentals and applications of calculus, as a prelude to studying more advanced functionsIncludes short, useful diagnostic exercises at the end of each chapter
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Descriptive organic chemistry --- Peroxides --- Analysis --- 543.632.545 --- 547-39 --- -Compounds, Peroxy --- Per-compounds --- Peroxy compounds --- Oxides --- Analytical chemistry. Peroxide compounds, determination --- Organic chemistry--?-39 --- Analysis. --- -Analytical chemistry. Peroxide compounds, determination --- 547-39 Organic chemistry--?-39 --- Compounds, Peroxy --- Peroxides - Analysis
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The earth has finite resources in terms of fossil origin fuel and a finite capacity for disposal of waste. Biopolymers may offer a solution to both these issues in the long-term. The ideal biopolymer is both of renewable biological origin and biodegradable at the end of its life. In some cases material may be of a biological origin and not readily biodegradable, such as thermosets made from cashew nut shell liquid. On the other hand, polyvinyl alcohol is an example of a polymer of a synthetic origin and biodegradable. Environmental degradation can involve enzymatic pathways and microorganisms
Biopolymers. --- Bioactive polymers --- Biological polymers --- Natural polymers --- Naturally occurring polymers --- Biomolecules --- Polymers
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