Principles of Soil and Plant Water Relations

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Principles of Soil and Plant Water Relations, Third Edition describes the fundamental principles of soil and water relationships in relation to water storage in soil and water uptake by plants. The book explains why it is important to know about soil-plant-water relations, with subsequent chapters providing the definition of all physical units and the SI system and dealing with the structure of water and its special properties. Final sections explain the structure of plants and the mechanisms behind their interrelationships, especially the mechanism of water uptake and water flow within plants and how to assess parameters. All chapters begin with a brief paragraph about why the topic is important and include all formulas necessary to calculate respective parameters. This third edition includes a new chapter on water relations of plants and soils in space as well as textbook problems and answers.

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  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Stress Mobility Mars Power Heat Herbaceous plants Hysteresis Gravity Solar radiation Pressure Thermal conductivity Energy Laminar flow Boundary layer Logarithms Hydrogen bonding Viscosity Specific gravity Specific heat Surface tension Density Electrolysis Ellipse Emissivity Evapotranspiration Impulse Period Terrestrial radiation Infiltration Gravitational potential Darcy Plagues Galileo Johannes Kepler Concept of time Frequency Penetrometer John Napier Ludwig Boltzmann Stefan Joule Heating Tanner Cathode Black body Laplace Dielectric constant Rudolf Clausius Anode Water molecule Altitude Robert Hooke Hooke's Law Vessels Tracheids Stoma Sap flow Tortuosity Pore space Thermoelectric effects Osmotic Pressure Gustav Kirchhoff Faraday Darcy's law Apollonius Pressure Transducer Hydraulic Conductivity Briggs Pressure plate Hertz Center of gravity Leaf area index Water content Thomas Young Tensiometer Infrared thermometer Adolf Fick Advection Apparent Solar Time Actual velocity Azimuth Black body temperature Blackman growth curve Breakthrough curves Brown and Escombe's diameter law Capillary rise of water Baron Kelvin cohesion theory Available water Cone Penetrometer Canopy temperature Corneliusde wit Colding equation Darcy velocity C.H.M. van Bavel Crop water stress index (CWSI)Infrared thermometer Direct-beam solar radiation equation Charles Wheatstone Dicotyledonous root Dual-probe heat pulse Circumnutation D.R. Nielsen Electrical analogs Ellipse equation Clothesline effect Coaxial Cable field of view force Cuticular resistance Henry Dixon Georg Ohm Höfler diagram Horton equation Heat-pulse method Dynamic test Discpermeameter John Joly Jacobus van't Hoff James Prescott Joule Elastic limit Katherine Esau Josef Stefan John Boyer Leaf anatomy Leaf Water Potential Evapotranspiration efficiency Epidermal resistance J.L.M. Poiseuille Field capacity J.R. Philip matric potential Length elasticity Lewis Equation Long-distance transport of water Oasis effect Matric potential at the soil–root boundary Normalized difference vegetation index (NDVI)Sherwood Idso Miscible Displacement Moisture-sensitive stages of crop growth Guard cell Permanent Wilting Point Heat-balance method Pit membranes Pore Volume Per Scholander Psychrometric equation Osborne Reynolds Rate of water uptake Peltier effect Pressure potential Green and Amptequation Repellency Pressure–volume curve J.C.A. Peltier Pump-up pressure chamber Sidereal time Siemens family Schelkunoff Radiant emittance Ray Jackson Shantz Law of resistance Static test Least limiting water range Statolith Soil Water Content Solar time Solute potential Heat of vaporization Scholander pressure chamber Howard penman Root Water Uptake Sigmoid growth curve SI units Thermoelectric power strain Tension Infiltrometer Vacuum Gauge Thermocouple psychrometers van't Hoff's law Mean solar time Kirchhoff's principle of radiation Transpiration Efficiency Soil water flux density Mercury manometer Linear flow laws Water manometer Water movement to a root Keywords: amyloplast Oxygen diffusion rate Moisture characteristic Monocotyledonous root Potential evapotranspiration Nonlimiting water range Relative water content root anatomy Root radius Oxygen availability to roots Parallel resistance law Seebeck effect osmometer Stem Anatomy Stress-degree-day Turgor pressure Van der Waals force Poiseuille's Law Population curve Two-stage process for evaporation from soil surface Reference evapotranspiration Soil-plant-atmosphere continuum (SPAC)Wheatstone bridge water potential Stem flow Stomatal Resistance Water and crop quality Tensile strength of water Vessel members W.R. Gardner

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