Q.Sandy soil is not suitable for cultivation. Explain why?
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Edaphic Factors
Edaphic factors are the abiotic factors tied specifically to soil, and the dedicated study of soil is called pedology. Soil is the weathered superficial layer of the Earth's crust where plants root, forming gradually from parent rock through weathering (including biological weathering by bacteria, fungi, lichens and plants). Soil texture is described by particle-size class — clayey (<0.002 mm), silt (0.002–0.02 mm), loamy (0.002–2 mm, ~70% sand + 30% clay/silt, considered ideal for cultivation), and sandy (0.2–2 mm) — and soil stratifies with depth into a soil profile of horizons: the organic O-horizon (humus, split into freshly-fallen O1 and decomposed O2), the leached A-horizon (topsoil, split into organic-rich A1 and mineral-rich A2), the accumulation B-horizon (subsoil, poor in humus, rich in iron/aluminium/silica clay), the partially-weathered C-horizon (parent rock fragments), and the bedrock R-horizon. Key edaphic sub-factors include soil moisture/soil water (capillary water between soil particles is the most important form available to plants), soil reaction (pH; crop plants do best at 5.5–6.8), soil nutrients (fertility, as mineral/organic ions), soil temperature (low temperature reduces root water/solute uptake), …
Sandy soil's large particles leave large pore spaces, so it drains too fast to hold water or nutrients, and it lacks the clay/silt fraction that gives soil structure and fertility. …
Step 1. The chapter's soil-particle table describes sandy soil as having particles 0.2–2 mm in size, composed of about 85% sand and only 15% clay, and calls it a 'light soil'.
Step 2. Because sand particles are large and coarse, the pore spaces between them are correspondingly large, so water drains through very rapidly under gravity rather than being retained as capillary water — the form the chapter identifies as most important for plant uptake.
Step 3. With so little clay (only 15%), sandy soil also lacks the fine, chemically active particles that normally hold nutrient ions and provide the soil's water-retention and fertility. …
Contrast sandy soil's particle composition against loamy soil's ideal balance, explaining why coars …
- Stating only 'sandy soil doesn't hold water' without explaining the underlying reason — large particle …
- CBSE 2026Set ANNUAL1 markMCQQ.Pedogenesis refers to :(a) Population(b) Fossils(c) Soil(d) Water
›Reveal solutionSolution
Pedogenesis is the scientific term for the process of soil formation.
Working
The term pedogenesis is derived from the Greek roots 'pedon' (soil) and 'genesis' (origin/formation), and refers to the natural process of soil formation -- the gradual transformation of parent rock material into soil through the combined, long-term action of physical, chemical and biological weathering, influenced by factors such as climate, living organisms, the underlying parent material, topography (relief), and time. This process produces the distinct soil horizons seen in a soil profile. Population refers to a group of individuals of the same species living in an area (studied under ecology, un …
- CBSE 2025Set ANNUAL1 markMCQQ.Which one of the following soil water is available for plants ?(a) Capillary Water(b) Gravitational Water(c) Hygroscopic Water(d) Chemically bound Water
›Reveal solutionSolution
Capillary water -- held in fine soil pores by surface tension against gravity -- is the form of soil water actually available for plant absorption.
Working
Soil water can be classified by how strongly it is held by soil particles:
- Gravitational water: occupies the larger soil pores (macropores) and drains downward under gravity soon after rain or irrigation; it is present only briefly and is largely unavailable because it moves out of the root zone quickly (though it does help aerate soil as it drains).
- Capillary water: held in the fine capillary pores (micropores) between soil particles by surface tension, against the pull of gravity; it is retained in the root zone at a moisture tension that plant root hairs CAN overcome by osmotic/suction force, so this is the main water source actually usable by plants for absorption and transpiration. …
- CBSE 2024Set ANNUAL1 markMCQQ.Read the following statements and fill up the blanks with correct option.(i) Total water content in soil is called _________.(ii) Water not available to plants is called _________.(iii) Water available to plants is called _________.(a)(i) Chresard,(ii) Echard,(iii) Holard(b)(i) Holard,(ii) Echard,(iii) Chresard(c)(i) Holard,(ii) Chresard,(iii) Echard(d)(i) Echard,(ii) Holard,(iii) Chresard
›Reveal solutionSolution
Total soil water = Holard, the unavailable fraction = Echard, and the plant-available fraction = Chresard -- matching option (b).
Working
Soil water is classically partitioned into three related quantities. Holard is the total quantity of water present in the soil at any given time, encompassing both the water plants can use and the water they cannot. Of this total, a portion is held so tightly by soil particles (through adsorption, capillary forces below the wilting point, etc.) that roots cannot extract it -- this unavailable fraction is called Echard. The remaining portion, which lies between the field capacity and the permanent wilting point and can genuinely be absorbed and used by plant roots, is called **Chresar …
- CBSE 2023Set ANNUAL1 markMCQQ.In soil, water available for plants is :(a) Capillary water(b) Gravitational water(c) Hygroscopic water(d) Chemically bound water
›Reveal solutionSolution
Capillary water, held by capillary forces in fine soil pores, is the fraction of soil water that is actually available for plant uptake.
Working
Soil water occurs in several physically distinct forms, and only one of these is physiologically available to plants:
- Gravitational water occupies the larger soil pores and drains downward under gravity soon after rain or irrigation, so it is present in the root zone only briefly and is largely unavailable for absorption.
- Capillary water is held in the fine capillary spaces between soil particles by surface tension, against the pull of gravity. It forms a thin film around soil particles and is retained in the root zone for extended periods at a tension that root hairs CAN overcome -- this is the principal source of water actually absorbed and used by plants. …
- CBSE 2023Set ANNUAL1 markMCQQ.Pedogenesis refers to :(a) Population(b) Fossils(c) Water(d) Soil
›Reveal solutionSolution
Pedogenesis is the process by which soil is formed from parent rock material over time.
Working
Pedogenesis (from Greek "pedon" = soil/ground, and "genesis" = origin/formation) refers to the natural process of soil formation. It describes how parent rock material is progressively broken down and transformed into soil through the combined, long-term action of several soil-forming factors: parent material (the underlying rock), climate (temperature and rainfall driving weathering), living organisms (plants, microbes and animals that add organic matter and mix the soil), relief/topography, and time.
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- CBSE 2020Set ANNUAL1 markMCQQ.Pick out the correct pair :(a) Oxylophytes - Plants living in ice surface(b) Hollard - Total soil water content(c) Chresard - Water not available to plants(d) Echard - Water available to plants
›Reveal solutionSolution
Holard denotes the total water content of soil, whether available to plants or not.
In plant-water ecology, the total water held in a soil at any time is called the holard. Of this total, only a portion can actually be absorbed by plant roots against the forces holding water to soil particles; this usable portion is called the chresard (available water), while the remainder, held too tightly by soil particles (below the permanent wilting point) for roots to extract, is called the echard (unavailable water) -- so holard = chresard + echard. Oxylophytes are plants adapted to grow in acidic, often nutrient-poor soils such as bogs and heathlands, not to ice surfaces (which would describe a chionophyte or psychrophyte- …
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