Matches in SemOpenAlex for { <https://semopenalex.org/work/W4211195349> ?p ?o ?g. }
Showing items 1 to 84 of
84
with 100 items per page.
- W4211195349 endingPage "984" @default.
- W4211195349 startingPage "979" @default.
- W4211195349 abstract "Free Access Further Reading F. Xavier Malcata, F. Xavier Malcata Department of Chemical Engineering, University of Porto, PortugalSearch for more papers by this author Book Author(s):F. Xavier Malcata, F. Xavier Malcata Department of Chemical Engineering, University of Porto, PortugalSearch for more papers by this author First published: 06 April 2020 https://doi.org/10.1002/9781119490319.furread2 AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onFacebookTwitterLinked InRedditWechat References M. Abramowitz and I. Stegun (eds.) (1964). Handbook of Mathematical Functions with Formulas, Graphs and Mathematical Tables. New York, NY, USA: Dover. Aitchison, J. and Brown, J. A. C. (1957). The Lognormal Distribution. Cambridge, UK: Cambridge University Press. Akopyan, A. V. and Zaslavsky, A. A. (2007). Geometry of Conics. Washington, DC, USA: American Mathematical Society. Andrews, G. E., Askey, R., and Roy, R. (1999). Special Functions. Cambridge, UK: Cambridge University Press. Apostol, T. M. (1967). Calculus. Waltham, MA, USA: Blaisdell. Apostol, T. M. (1974). Mathematical Analysis. Reading, MA, USA: Addison-Wesley. Ayres, F. and Mendelson, E. (2008). Calculus. New York, NY, USA: McGraw-Hill. Ballantine, C. and Roberts, J. (2002). A simple proof of Rolle's theorem for finite fields. American Mathematical Monthly 109: 72– 74. Bartlett, M. S. (1954). A note on multiplying factors for various χ 2 approximations. Journal of Royal Statistical Society Series B 16: 296– 298. Bayin, S. S. (2006). Mathematical Methods in Science and Engineering. New York, NY, USA: Wiley. Bender, C. M. and Orszag, S. A. (1999). Advanced Mathematical Methods for Scientists and Engineers: Asymptotic Methods and Perturbation Theory. New York, NY, USA: Springer. Beveridge, G. S. G. and Schechter, R. S. (1970). Optimization: Theory and Practice. New York, NY, USA: McGraw-Hill. Beyer, W. H. (1987). CRC Standard Mathematical Tables. Boca Raton, FL, USA: CRC Press. Bliss, C. I. (1934). The method of probits. Science 79: 38– 39. Boltyanskii, V. G., Gamkrelidze, R. V., and Pontryagin, L. S. (1956). On the theory of optimal processes. Doklady Akademii Nauk SSSR 110: 7– 10. R.E. Bolz and G.L. Turve (eds.) (1973). CRC Handbook of Tables for Applied Engineering Science. Boca Raton, FL, USA: CRC Press. van den Bos, A. (2007). Parameter Estimation for Scientists and Engineers. Hoboken, NJ, USA: Wiley. Bowman, F. (1958). Introduction to Bessel Functions. New York, NY, USA: Dover. Boyer, C. B. (1989). A History of Mathematics. New York, NY, USA: Wiley. Boyer, C. B. (2004). History of Analytical Geometry. New York, NY, USA: Dover. Bromwich, T. J. l'A. and MacRobert, T. M. (1991). An Introduction to the Theory of Infinite Series. New York, NY, USA: Chelsea. Burmann, H. H. (1799). Essai de calcul fonctionnaire aux constantes ad libitum . Memoires de l'Institut Nationale des Sciences et des Arts – Science, Mathematique, Physique 2: 13– 17. Burnham, K. P. and Anderson, D. R. (2002). Model Selection and Multimodel Inference: A Practical Information-Theoretic Approach. New York, NY, USA: Springer-Verlag. Carlitz, L. (1963). The inverse of the error function. Pacific Journal of Mathematics 13: 459– 470. Carlslaw, H. S. and Jaeger, J. C. (1963). Operational Methods in Applied Mathematics. Dover, NH, USA: Dover. Cartwright, J. H. E. and Piro, O. (1992). The dynamics of Runge-Kutta methods. International Journal of Bifurcations Chaos 2: 427– 449. Casey, J. (1996). Exploring Curvature. Wiesbaden, Germany: Vieweg. Comenetz, M. (2002). Calculus: The Elements. Singapore: World Scientific. DasGupta, A. (2010). Fundamentals of Probability: A First Course. New York, NY, USA: Springer-Verlag. Davis, P. J. (1959). Leonhard Euler's integral: a historical profile of the gamma function. American Mathematics Monthly 66: 849– 869. Dhrymes, P. J. (1978). Mathematics for Econometrics. New York, NY, USA: Springer-Verlag. Eberlein, W. F. (1977). On Euler's infinite product for the sine. Journal of Mathematical Analysis and Applications 58: 147– 151. Euler, L. (1738). De progressionibus transcendentibus seu quarum termini generales algebraice dari nequeunt. Commentarii Academiae Scientiarum Petropolitanae 5: 36– 57. Eves, H. (1963). A Survey of Geometry. Boston, MA, USA: Allyn & Bacon. Fanchi, J. R. (2006). Math Refresher for Scientists and Engineers. New York, NY, USA: Wiley. Feller, W. (2008). An Introduction to Probability Theory and Its Applications. Hoboken, NJ, USA: Wiley. Fine, N. J. (1988). Basic Hypergeometric Series and Applications. Providence, RI, USA: American Mathematical Society. Fisher, R. A. (1925). Applications of Student's t-distribution. Metron 5: 3– 17. Fisher, R. A. (1925). Expansion of Student's integral powers of n-1. Metron 5: 22– 32. Fisher, R. A. (1948). Statistical Methods for Research Workers. Edinburgh, UK: Oliver & Boyd. Forsythe, G. E., Malcolm, M. A., and Moler, C. B. (1977). Computer Methods for Mathematical Computations. Englewood Cliffs, NJ, USA: Prentice-Hall. Friedmann, T. and Hagen, C. R. (2015). Quantum mechanical derivation of the Wallis formula for pi. Journal of Mathematical Physics 56: 112101. Fuller, A. T. (1963). Bibliography of Pontryagin's maximum principle. Journal of Electronics and Control 15: 513– 517. Gasper, G. and Rahman, M. (1990). Basic Hypergeometric Series. Cambridge, UK: Cambridge University Press. Geering, H. P. (2007). Optimal Control with Engineering Applications. New York, NY, USA: Springer. Golub, G. H. and van Loan, C. F. (1983). Matrix Computations. Baltimore, MA, USA: John Hopkins University Press. Gradshteyn, I. S. and Ryzhik, I. M. (1980). Tables of Integrals, Series, and Products. San Diego, CA, USA: Academic Press. Graybill, F. A. (1983). Matrices with Applications in Statistics. Belmont, CA, USA: Wadsworth International. Graybill, F. A. and Bowden, D. C. (1967). Linear segment confidence bands for simple linear models. Journal of American Statistical Association 62: 403– 408. Grossman, S. I. (1986). Multivariate Calculus, Linear Algebra and Differential Equations. Cambridge, MA, USA: Academic Press. Guimarães, R. C. and Cabral, J. A. S. (1997). Estatística. Lisboa, Portugal: McGraw-Hill. Hairer, E. and Wanner, G. (1996). Solving Ordinary Differential Equations. II: Stiff and Differential-Algebraic Problems. Berlin, Germany: Springer-Verlag. Hairer, E., Norsett, S. P., and Wanner, G. (1993). Solving Ordinary Differential Equations. I: Nonstiff Problems. Berlin, Germany: Springer-Verlag. Hamming, R. W. (1991). The Art of Probability for Engineers and Scientists. Boston, MA, USA: Addison-Wesley. Harris, J. W. and Stocker, H. (1998). Handbook of Mathematics and Computational Science. New York, NY, USA: Springer. Helmert, F. R. (1875). Ueber die Bestimmung des wahrscheinlichen Fehlers aus einer endlichen Anzahl wahrer Beobachtungsfheler. Zeitschrift fur Mathematik und Physik 20: 300– 303. Helmert, F. R. (1876). Ueber die Wahrscheinlichkeit der Potenzsummen der Beobachtungsfehler und uber einige damit im Zusammenhange stehende Fragen. Zeitschrift fur Mathematik und Physik 21: 102– 219. Hildebrand, F. B. (1956). Introduction to Numerical Analysis. New York, NY, USA: McGraw-Hill. Hotelling, H. (1931). The generalization of Student's ratio. Annals of Mathematical Statistics 2: 360– 378. Irving, J. and Mullineux, N. (1959). Mathematics in Physics and Engineering. New York, NY, USA: Academic Press. Jagdish, K. P. and Campbell, B. R. (1996). Handbook of the Normal Distribution. New York, NY, USA: Marcel Dekker. James, R. C. (1966). Advanced Calculus. Belmont, CA, USA: Wadsworth. Jaynes, E. T. (1957). Information theory and statistical mechanics. Physical Review 106: 620– 630. Jaynes, E. T. (1975). Information theory and statistical mechanics, II. Physical Review 108: 171– 190. Jaynes, E. T. (2003). Probability Theory: The Logic of Science. Cambridge, UK: Cambridge University Press. Jeffreys, H. and Jeffreys, B. S. (1988). Methods of Mathematical Physics. Cambridge, UK: Cambridge University Press. Johnson, R. and Bhattacharya, G. (1996). Statistics: Principles and Methods. Hoboken, NJ, USA: Wiley. Johnson, N. L., Kotz, S., and Balakrishnan, N. (1994). Continuous Univariate Distributions. Hoboken, NJ, USA: Wiley. Kaplan, W. (1992). Advanced Calculus. Reading, MA, USA: Addison-Wesley. Katz, V. J. (1998). A History of Mathematics: An Introduction. Reading, MA, USA: Addison-Wesley. Kirk, D. E. (1970). Optimal Control Theory: An Introduction. New York, NY, USA: Prentice Hall. Kline, M. (1998). Calculus: An Intuitive and Physical Approach. New York, NY, USA: Dover. Koepf, W. (2014). Hypergeometric Summation: An Algorithmic Approach to Summation of Special Function Identities. Braunschweig, Germany: Vieweg Verlag. Krantz, S. G. (2004). A Handbook of Real Variables: With Applications to Differential Equations. Boston, MA, USA: Birkhauser Boston. Kreyszig, E. (1979). Advanced Engineering Mathematics. New York, NY, USA: Wiley. Lagrange, J. L. (1770). Nouvele méthode pour résoudre les équations littérales par le moyen des séries. Mémoires de l'Académie Royale des Sciences et Belles-Lettres de Berlin 24: 251– 326. Lehmann, E. L. and Romano, J. P. (2005). Testing Statistical Hypotheses. New York, NY, USA: Springer-Verlag. Leipnik, R. B. (1991). On lognormal random variables: I – the characteristic function. Journal of Australian Mathematical Society Series B 32: 327– 347. Lettenmeyer, F. (1936). Uber die sogenannte Hospitalsche Regel. Journal fur die Reine und Angewandte Mathematik 174: 246– 247. Lyche, R. T. (1962). Matematisk Analyse II. Oslo, Norway: Gylendal Norsk Forlag. MacKay, D. J. C. (2003). Information Theory, Inference, and Learning Algorithms. Cambridge, UK: Cambridge University Press. Magnus, J. R. and Neudecker, H. (1999). Matrix Differential Calculus with Applications in Statistics and Econometrics. New York, NY, USA: Wiley. Mardia, K., Kent, J. T., and Bibby, J. (1979). Multivariate Analysis. Cambridge, MA, USA: Academic Press. Mason, R., Lind, D., and Marchal, W. (1998). Statistics, an Introduction. Three Lakes, WI, USA: Cole Publishing. Melnikov, Y. A. (2011). Green's Functions and Infinite Products. New York, NY, USA: Springer. Merserve, B. E. (1983). Fundamental Concepts of Geometry. New York, NY, USA: Dover. Miller, I. and Miller, M. (2004). John E. Freund's Mathematical Statistics with Applications. Upper Saddle River, NJ, USA: Prentice Hall. Miller, R. G. (1966). Simultaneous Statistical Inference. New York, NY, USA: Springer-Verlag. Montgomery, D. (2009). Design and Analysis of Experiments. Hoboken, NJ, USA: Wiley. Mood, A., Graybill, F. A., and Boes, D. C. (1974). Introduction to the Theory of Statistics. New York, NY, USA: McGraw-Hill. Moore, D. (2003). Introduction to the Practice of Statistics. New York, NY, USA: W. H. Freeman. Neyman, J. and Pearson, E. S. (1933). On the problem of the most efficient tests of statistical hypotheses. Philosophical Transactions of Royal Society A 231: 694– 706. F.W.J. Olver, D.W. Lozier, R.F. Boisvert, and C.W. Clark (eds.) (2010). NIST Handbook of Mathematical Functions. Cambridge, UK: Cambridge University Press. Ossendrijver, M. (2016). Ancient Babyonian astronomers calculated Jupiter's position from the area under a time-velocity graph. Science 351: 482– 484. Park, S. Y. and Bera, A. K. (2009). Maximum entropy autoregressive conditional heteroskedasticity model. Journal of Econometrics 150: 219– 230. Pfeiffer, P. E. (1978). Concepts of Probability Theory. Mineola, NY, USA: Dover. Piskounov, N. (2000). Differential and Integral Calculus. Moscow, Russia: Hayka. Pontryagin, L. S., Boltyanskii, V. G., Gamkrelidze, R. V., and Mischenko, E. F. (1962). The Mathematical Theory of Optimal Processes. New York, NY, USA: Interscience. A.D. Poularikas (ed.) (2000). The Transforms and Applications Handbook. Boca Raton, FL, USA: CRC Press. Press, W. H., Flannery, B. P., Tukolsky, S. A., and Vetterling, W. T. (1992). Numerical Recipes in FORTRAN: The Art of Scientific Computing. Cambridge, UK: Cambridge University Press. Schervish, M. (1996). Theory of Statistics. New York, NY, USA: Springer-Verlag. Shaffer, J. P. (1995). Multiple hypothesis testing. Annual Reviews in Psychology 46: 561– 584. Shannon, C. E. and Weaver, W. (1949). The Mathematical Theory of Communication. Urbana, IL, USA: University of Illinois Press. Sharma, A. K. (2005). Application of Integral Calculus. New Delhi, India: Discovery Publishing House. Simon, M. K. (2002). Probability Distributions Involving Gaussian Random Variables. New York, NY, USA: Springer-Verlag. Singh, R. R. (1993). Engineering Mathematics. New York, NY, USA: McGraw-Hill. Spain, B. and Smith, M. G. (1970). Functions of Mathematical Physics. London, UK: van Nostrand Reinhold. Spivak, M. (1994). Calculus. Houston, TX, USA: Publish or Perish. Steel, R. G. D. and Torrie, J. H. (1960). Principles and Procedures of Statistics with Special Reference to the Biological Sciences. New York, NY, USA: McGraw-Hill. Steinbrechter, G. and Shaw, W. T. (2008). Quantile mechanics. European Journal of Applied Mathematics 19: 87– 112. Stephanopoulos, G. (1984). Chemical Process Control: An Introduction to Theory and Practice. Englewood Cliffs, NJ, USA: Prentice-Hall. Stephenson, G. (1973). Mathematical Methods for Science Students. London, UK: Longman. Stoer, J. and Bulirsch, R. (1980). Introduction to Numerical Analysis. New York, NY, USA: Springer-Verlag. Stuart, A., Ord, K., and Arnold, S. (1999). Kendall's Advanced Theory of Statistics: Volume 2 – Classical Inference and the Linear Model. Hoboken, NJ, USA: Wiley. Student (1908). The probable error of a mean. Biometrika 6: 1– 25. Taylor, A. E. (1952). L'Hôpital rule. American Mathematic Monthly 59: 20– 24. Temme, N. M. (1996). Special Functions: An Introduction to the Classical Functions of Mathematical Physics. New York, NY, USA: Wiley. Trahan, D. H. (1969). The mixed partial derivatives and the double derivative. American Mathematical Monthly 76: 76– 77. Triola, M. (2001). Elementary Statistics. Boston, MA, USA: Addison-Wesley. Varadarajan, V. S. (2007). Euler and his work on infinite series. Bulletin of American Mathematical Society 44: 515– 539. Wastlund, J. (2007). An elementary proof of the Wallis product formula for pi. American Mathematical Monthly 114: 914– 917. Watson, G. N. (1966). A Treatise on the Theory of Bessel Functions. Cambridge, UK: Cambridge University Press. Whitaker, E. T. and Watson, G. N. (1990). A Course on Modern Analysis. Cambridge, UK: Cambridge University Press. Wiener, J. (2000). Integrals of cos2nx and sin2nx. College Mathematics Journal 31: 60– 61. Wilde, D. J. and Beightler, C. S. (1967). Foundations of Optimization. Englewood Cliffs, NJ, USA: Prentice Hall. Wilk, M. B. and Gnanadesikan, R. (1968). Probability plotting methods for the analysis of data. Biometrika 55: 1– 17. Wilson, W. A. and Tracey, J. I. (1925). Analytic Geometry. Lexington, MA, USA: D. C. Heath. Wishart, J. (1928). The generalised product moment distribution in samples from a normal multivariate population. Biometrika 20: 32– 52. Wolsson, K. (1989). A condition equivalent to linear dependence for functions with vanishing Wronskian. Linear Algebra and its Applications 116: 1– 8. Working, H. and Hotelling, H. (1929). Applications of the theory of error to the interpretation of trends. Journal of American Statistical Association 24: 73– 85. Young, W. H. (1908). On the conditions for the reversibility of the order of partial differentiation. Proceedings of the Royal Society of Edinburgh 29: 136– 164. Zia, R. K. P., Redish, E. F., and McKay, S. R. (2007). Making sense of the Legendre transform. American Journal of Physics 77: 614– 655. Mathematics for Enzyme Reaction Kinetics and Reactor Performance ReferencesRelatedInformation" @default.
- W4211195349 created "2022-02-13" @default.
- W4211195349 date "2020-04-06" @default.
- W4211195349 modified "2023-10-14" @default.
- W4211195349 title "Further Reading" @default.
- W4211195349 cites W1505149835 @default.
- W4211195349 cites W1659874285 @default.
- W4211195349 cites W1965263041 @default.
- W4211195349 cites W1973335304 @default.
- W4211195349 cites W1992813655 @default.
- W4211195349 cites W1993838378 @default.
- W4211195349 cites W1995504856 @default.
- W4211195349 cites W1997858655 @default.
- W4211195349 cites W2000094151 @default.
- W4211195349 cites W2011974727 @default.
- W4211195349 cites W2029865638 @default.
- W4211195349 cites W2031345312 @default.
- W4211195349 cites W2032558547 @default.
- W4211195349 cites W2065951898 @default.
- W4211195349 cites W2074466695 @default.
- W4211195349 cites W2122961414 @default.
- W4211195349 cites W2135445066 @default.
- W4211195349 cites W2149348084 @default.
- W4211195349 cites W2149865537 @default.
- W4211195349 cites W2182701172 @default.
- W4211195349 cites W2259082860 @default.
- W4211195349 cites W2327317837 @default.
- W4211195349 cites W2470050293 @default.
- W4211195349 cites W2478724728 @default.
- W4211195349 cites W2485278189 @default.
- W4211195349 cites W2491069990 @default.
- W4211195349 cites W2794298548 @default.
- W4211195349 cites W3088997850 @default.
- W4211195349 cites W3102603521 @default.
- W4211195349 cites W4230065791 @default.
- W4211195349 cites W4230104858 @default.
- W4211195349 cites W4230230098 @default.
- W4211195349 cites W4233561388 @default.
- W4211195349 cites W4236421521 @default.
- W4211195349 cites W4237351959 @default.
- W4211195349 cites W4237828103 @default.
- W4211195349 cites W4242849907 @default.
- W4211195349 cites W4245999056 @default.
- W4211195349 cites W4249604881 @default.
- W4211195349 cites W4252028749 @default.
- W4211195349 cites W4256694603 @default.
- W4211195349 cites W4292024793 @default.
- W4211195349 cites W4299495321 @default.
- W4211195349 cites W4299551239 @default.
- W4211195349 cites W4300551120 @default.
- W4211195349 cites W4302769929 @default.
- W4211195349 cites W4379338011 @default.
- W4211195349 cites W646725171 @default.
- W4211195349 doi "https://doi.org/10.1002/9781119490319.furread2" @default.
- W4211195349 hasPublicationYear "2020" @default.
- W4211195349 type Work @default.
- W4211195349 citedByCount "0" @default.
- W4211195349 crossrefType "other" @default.
- W4211195349 hasConcept C138885662 @default.
- W4211195349 hasConcept C41008148 @default.
- W4211195349 hasConcept C41895202 @default.
- W4211195349 hasConcept C554936623 @default.
- W4211195349 hasConceptScore W4211195349C138885662 @default.
- W4211195349 hasConceptScore W4211195349C41008148 @default.
- W4211195349 hasConceptScore W4211195349C41895202 @default.
- W4211195349 hasConceptScore W4211195349C554936623 @default.
- W4211195349 hasLocation W42111953491 @default.
- W4211195349 hasOpenAccess W4211195349 @default.
- W4211195349 hasPrimaryLocation W42111953491 @default.
- W4211195349 hasRelatedWork W1596801655 @default.
- W4211195349 hasRelatedWork W2130043461 @default.
- W4211195349 hasRelatedWork W2350741829 @default.
- W4211195349 hasRelatedWork W2358668433 @default.
- W4211195349 hasRelatedWork W2376932109 @default.
- W4211195349 hasRelatedWork W2382290278 @default.
- W4211195349 hasRelatedWork W2390279801 @default.
- W4211195349 hasRelatedWork W2748952813 @default.
- W4211195349 hasRelatedWork W2899084033 @default.
- W4211195349 hasRelatedWork W2530322880 @default.
- W4211195349 isParatext "false" @default.
- W4211195349 isRetracted "false" @default.
- W4211195349 workType "other" @default.