000 04176nam a2200457 i 4500
999 _c139895
_d139895
001 9781681748962
003 IOP
005 20190304193240.0
006 m eo d
007 cr cn |||m|||a
008 180405s2018 caua ob 000 0 eng d
020 _a9781681748962
_qebook
020 _a9781681748948
_qmobi
020 _z9781681748931
_qprint
024 7 _a10.1088/978-1-6817-4896-2
_2doi
035 _a(CaBNVSL)thg00975833
035 _a(OCoLC)1030775324
040 _aCaBNVSL
_bgre
_eAACR2
_cGR-PaULI
_dGR-PaULI
082 0 4 _a530.158 282
_223
100 _aZubairi, Omair
_eσυγγραφέας.
_9174438
245 1 0 _aIntroduction to computational physics for undergraduates /
_cOmair Zubairi, Fridolin Weber.
260 _aSan Rafael [Καλιφόρνια] :
_bMorgan & Claypool Publishers,
_cc2018.
300 _a1 ηλεκτρονική πηγή (ποικίλες σελιδαριθμήσεις) :
_bεικ. (μερ. έγχρ.).
490 1 _aIOP concise physics,
_x2053-2571
504 _aΠεριλαμβάνει βιβλιογραφικές παραπομπές.
505 0 _a1. The Linux/Unix operating system -- 1.1. Introduction -- 1.2. Files and directories -- 1.3. Overview of Unix/Linux commands -- 1.4. Basic commands -- 1.5. More on the C-shell
505 8 _a2. Text editors -- 2.1. Vi -- 2.2. Emacs
505 8 _a3. The Fortran 90 programming language -- 3.1. Compilers -- 3.2. Program layout -- 3.3. Variable declaration -- 3.4. Basic expressions -- 3.5. Input and output -- 3.6. Control structures -- 3.7. Modular programming -- 3.8. Arrays
505 8 _a4. Numerical techniques -- 4.1. Curve fitting--method of least squares -- 4.2. Numerical differentiation -- 4.3. Numerical integration -- 4.4. Matrix operations -- 4.5. Finding roots -- 4.6. Solving ordinary differential equations
505 8 _a5. Problem solving methodologies -- 5.1. General guidelines -- 5.2. Projectile motion example
505 8 _a6. Worksheet assignments -- 6.1. Coding a mathematical expression -- 6.2. Comparing two functions -- 6.3. Bessel functions of the first kind -- 6.4. Logical IF statements -- 6.5. Lead concentration in humans (data analytics) -- 6.6. Nested DO loops and double summations -- 6.7. Ionic crystals -- 6.8. Least-squares fit -- 6.9. Numerical derivatives -- 6.10. Numerical integration -- 6.11. Finding roots of a nonlinear equation -- 6.12. Ordinary differential equations -- 6.13. Projectile in a viscous medium -- 6.14. Damped harmonic oscillator -- 6.15. RLC circuit
505 8 _a7. Homework assignments -- 7.1. Fresnel coefficients -- 7.2. Earth atmosphere model -- 7.3. Magnetic permeability -- 7.4. Maxwell-Boltzmann distribution -- 7.5. Kinetic friction -- 7.6. Compton scattering -- 7.7. Radioactive decay -- 7.8. Halley's comet -- 7.9. Rocket equation -- 7.10. Hydrostatic equilibrium and relativistic stars -- 7.11. Massive stars -- 7.12. Isothermal gas spheres -- 7.13. Proton in constant electric and magnetic fields -- 7.14. Square voltage pulse applied to a RC circuit -- 7.15. Mutual inductance of two coils
505 8 _aAppendices. A. Summary of Fortran features -- B. Plotting using Python -- C. Fortran 90 sample program illustrating good programming C. --
520 3 _aThis is an introductory textbook on computational methods and techniques intended for undergraduates at the sophomore or junior level in the fields of science, mathematics, and engineering. It provides an introduction to programming languages such as FORTRAN 90/95/2000 and covers numerical techniques such as differentiation, integration, root finding, and data fitting. The textbook also entails the use of the Linux/Unix operating system and other relevant software such as plotting programs, text editors, and mark up languages such as LaTeX. It includes multiple homework assignments.
650 0 _aΜαθηματική φυσική
_913
650 0 _aΦυσική
_xΕπεξεργασία δεδομένων
_938038
700 _aWeber, F.
_q(Fridolin)
_d1955-
_eσυγγραφέας.
_9174439
830 0 _aIOP concise physics.
856 4 0 _uhttp://iopscience.iop.org/book/978-1-6817-4896-2
942 _2ddc
_cERS