| Hint | Answer | % Correct |
|---|---|---|
| Grass does not grow beneath... | 5 degrees | 0%
|
| Increasing soil water | Aeration | 0%
|
| Reducing soil water | Aeration | 0%
|
| Other soil factors | Aeration | 0%
|
| Waterlogged soils | Anaerobic | 0%
|
| Topography impacts | Aspect | 0%
|
| Temperature importance | Biochemical reactions | 0%
|
| Water importance | Cell turgidity | 0%
|
| Abiotic factors | CO2 | 0%
|
| Inorganic fertiliser advantages | Controllable composition | 0%
|
| Wind impacts | Crop damage | 0%
|
| Cultural nutrient controls | Crop rotation | 0%
|
| Temperature controls | Dispersing cold air | 0%
|
| Water importance | Dissolved nutrients | 0%
|
| Reducing soil water | Ditches | 0%
|
| Reducing soil water | Drainage | 0%
|
| Long daylength increases... | Egg and Milk production | 0%
|
| Inorganic fertiliser disadvantages | Energy use | 0%
|
| Temperature importance | Enzymes | 0%
|
| Temperature importance | Evaporation | 0%
|
| Wind impacts | Evaporation | 0%
|
| Irregular water can cause... (2) | Expanding, splitting | 0%
|
| Inorganic fertiliser advantages | Fast release | 0%
|
| Topography impacts | Frost pockets | 0%
|
| Temperature importance | Frost season | 0%
|
| Water importance | Gasous exchange | 0%
|
| Temperature controls | Greenhouse | 0%
|
| Hydroponics advantages | Growth directed to harvestable crop | 0%
|
| Organic fertiliser disadvantages | Heavy | 0%
|
| Cattle disease | High altitude disease | 0%
|
| Relief impacts | Increased evaporation | 0%
|
| Hydroponics disadvantages | Intensive | 0%
|
| Increasing soil water | Irrigation | 0%
|
| Inorganic fertiliser disadvantages | Leaching | 0%
|
| Cultural nutrient controls | Legumes | 0%
|
| Abiotic factors | Light | 0%
|
| Organic fertiliser advantages | Locally available | 0%
|
| Temperature controls | Location | 0%
|
| Relief impacts | Low pressure | 0%
|
| Relief impacts | Low temperature | 0%
|
| Topography impacts | Machinery | 0%
|
| Increasing soil water | Mulching | 0%
|
| Cultural nutrient controls | Mycorrhizal fungi | 0%
|
| Hydroponics advantages | No soil pathogens | 0%
|
| Hydroponics advantages | Optimal supply | 0%
|
| Organic fertiliser advantages | Organic matter | 0%
|
| Other soil factors | pH | 0%
|
| Water importance | Physiological functions | 0%
|
| Reducing soil water | Ploughing | 0%
|
| Cattle disease explained | Pulmonary arteries thicken | 0%
|
| Abiotic factors | Relief | 0%
|
| Water importance | Replace water lost from evapotranspiration | 0%
|
| High water requirement crop | Rice | 0%
|
| Waterlogged soils | Risk of fungal disease | 0%
|
| Topography impacts | Runoff rate | 0%
|
| Other soil factors | Salinity | 0%
|
| Short daylength influences... | Sheep mating season | 0%
|
| Organic fertiliser disadvantages | Slow release | 0%
|
| Organic fertiliser advantages | Soil biota | 0%
|
| Wind impacts | Soil erosion | 0%
|
| Abiotic factors | Soil fertility | 0%
|
| Temperature controls | South facing slopes | 0%
|
| ______ close to prevent _________, stopping ___ absorption | Stomata, dehydration, CO2 | 0%
|
| Abiotic factors | Temperature | 0%
|
| Control of ________ ________ to ____ _____ and ______ into the _____ ___ ____ | Terrestrial ecosystems, divert energy nutrients, human food chain | 0%
|
| Temperature importance | Thermal growing season | 0%
|
| Temperature importance | Thermoregulation | 0%
|
| Temperature controls | Thermostatically controlled buildings | 0%
|
| Abiotic factors | Topography | 0%
|
| Water shortages can increase... | Trampling damage | 0%
|
| Organic fertiliser disadvantages | Uncontrollable composition | 0%
|
| Abiotic factors | Water | 0%
|
| Low water requirement crop | Wheat | 0%
|
| Abiotic factors | Wind | 0%
|
| Temperature controls | Woven plastic cloth | 0%
|