MODELS FOR PROCESSES IN THE SOIL - PROGRAMS AND EXERCISES (Record no. 3566)
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000 -LEADER | |
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fixed length control field | 02356nam a2200229#a 4500 |
001 - CONTROL NUMBER | |
control field | vtls000005279 |
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION | |
fixed length control field | 230822s1990 xx 000 0 eng d |
020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
International Standard Book Number | 3-923381-24-7 |
040 ## - CATALOGING SOURCE | |
Original cataloging agency | JPS |
090 00 - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN) | |
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) | GEOT.SOIL 624.13 ANL |
003 - CONTROL NUMBER IDENTIFIER | |
control field | JPS |
100 ## - MAIN ENTRY--PERSONAL NAME | |
Personal name | ANLAUF, R. |
Relator term | author |
245 #0 - TITLE STATEMENT | |
Title | MODELS FOR PROCESSES IN THE SOIL - PROGRAMS AND EXERCISES |
260 ## - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE | |
Place of production, publication, distribution, manufacture | CREMLINGEN: CATENA VERLAG, |
Date of production, publication, distribution, manufacture | 1990 |
300 ## - PHYSICAL DESCRIPTION | |
Extent | 227P; ILLUST |
500 ## - GENERAL NOTE | |
General note | DI TERIMA DARIPADA PERPUSTAKAAN REKABENTUK |
505 ## - FORMATTED CONTENTS NOTE | |
Formatted contents note | 1. Introduction. 1.1 Principals structure of a BASIC program. 1.2 The BASIC-dialect used. 1.3 To solve a differential equation using BASIC. 1.4 Exercises with the transport equation. 2. Simulation of simple one-dimensional transport processes. 2.1 Introduction: A remark about analytical and numerical solutions. 2.2 Heat conduction in the dry homogeneous soil. 2.3 Explicit and implicit solution for solute transport problems. 2.4 Example simulations of solute transport. 3. Simulation of the one-dimensional water transport. 3.1 Soil water movement as an example for the solution of non-linear differential equation. 3.2 The Newton-Raphson methods to solve the water transport equation. 3.3 The wind- van Doorne methods to solve the water transport equation. 3.4 Infiltration into homogeneous soils. 3.5 Infiltration into a two soil. 3.6 Capillary rise in homogeneous and multi-layered soils. 4. Transformation processes. 4.1 Simple reaction in homogeneous soils. 4.2 Complex reactions in homogeneous soils. 4.3 Reactions in heterogeneous soils: kinetic adsorption and desorption processes. 4.4 Other sources and sink terms: uptake by roots. 5. Simple soil heat water and matter regime model. 5.1 A simple soil heat regime model. 5.2 A simple model of the soil gas regime. 5.3 A simple water regime model. 5.4 A model to simulate nitrogen regime during the winter half year. 5.5 Movement of solutes in soils. 6. Regional models. 6.1 Modelling water and solute transport according to Burns. 6.2 Geostatistical representation of spatial heterogeneity. 6.3 Monte-Carlo simulations of steady state solute transport. 7. Literature. 8. Appendix. |
546 ## - LANGUAGE NOTE | |
Language note | ENGLISH |
650 10 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name entry element | SOIL MODEL. |
942 ## - ADDED ENTRY ELEMENTS (KOHA) | |
Koha item type | Monograf |
990 ## - EQUIVALENCES OR CROSS-REFERENCES [LOCAL, CANADA] | |
Link information for 9XX fields | 1990 |
Withdrawn status | Lost status | Damaged status | Not for loan | Collection | Home library | Current library | Shelving location | Date acquired | Total checkouts | Full call number | Barcode | Date last seen | Copy number | Price effective from | Koha item type |
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General Collections | JPS HQ Library | JPS HQ Library | Main Library | 22/08/2023 | GEOT.SOIL 624.13 ANL | 1000000524 | 22/08/2023 | 1 | 22/08/2023 | Monograf |