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  2. The Worst Time to Water Indoor and Outdoor Plants ... - AOL

    www.aol.com/worst-time-water-indoor-outdoor...

    And, like outdoor plants, houseplants don't need as much water in winter. "Indoor environments are generally climate-controlled," says Ariel Vazquez, TeachMe.To gardening expert.

  3. Available water capacity - Wikipedia

    en.wikipedia.org/wiki/Available_water_capacity

    It is also known as available water content (AWC), profile available water (PAW) [2] or total available water (TAW). The concept, put forward by Frank Veihmeyer and Arthur Hendrickson, [3] assumed that the water readily available to plants is the difference between the soil water content at field capacity (θ fc) and permanent wilting point (θ ...

  4. Plant nutrition - Wikipedia

    en.wikipedia.org/wiki/Plant_nutrition

    Plant nutrition is the study of the chemical elements and compounds necessary for plant growth and reproduction, plant metabolism and their external supply. In its absence the plant is unable to complete a normal life cycle, or that the element is part of some essential plant constituent or metabolite .

  5. Irrigation - Wikipedia

    en.wikipedia.org/wiki/Irrigation

    It involves artificially raising the water table to moisten the soil below the root zone of plants. Irrigation water can come from groundwater (extracted from springs or by using wells), from surface water (withdrawn from rivers, lakes or reservoirs) or from non-conventional sources like treated wastewater, desalinated water, drainage water, or ...

  6. How Often Should You Water Indoor Plants in Winter to ... - AOL

    www.aol.com/often-water-indoor-plants-winter...

    If your potting mix dries out too quickly and you haven’t repotted in a while, you may need to repot your plants into fresh soil to improve water retention. Related: The 7 Best Potting Soils of 2024

  7. Permanent wilting point - Wikipedia

    en.wikipedia.org/wiki/Permanent_wilting_point

    The concept was introduced in the early 1910s. Lyman Briggs and Homer LeRoy Shantz (1912) proposed the wilting coefficient, which is defined as the percentage water content of a soil when the plants growing in that soil are first reduced to a wilted condition from which they cannot recover in approximately saturated atmosphere without the addition of water to the soil.

  8. Vapour-pressure deficit - Wikipedia

    en.wikipedia.org/wiki/Vapour-pressure_deficit

    On the other hand, as the VPD increases, the plant needs to draw more water from its roots. In the case of cuttings, the plant may dry out and die. For this reason the ideal range for VPD in a greenhouse is from 0.45 kPa to 1.25 kPa, ideally sitting at around 0.85 kPa. As a general rule, most plants grow well at VPDs of between 0.8 and 0.95 kPa.

  9. Water-use efficiency - Wikipedia

    en.wikipedia.org/wiki/Water-use_efficiency

    field level : based on measurements of CO 2 and water fluxes over a field of a crop or a forest, using the eddy covariance technique [4] Research to improve the water-use efficiency of crop plants has been ongoing from the early 20th century, however with difficulties to actually achieve crops with increased water-use efficiency. [5]