no it do not change
No
if the temperature increased, then the radish germination will increase
When annual temperatures increase sharply above the ideal crop temperature, it can cause a decrease in a crop's yield. Likewise, other factors like an increase in carbon dioxide levels can cause an increase in the growth of crops.
The temperature of water can impact plant growth by affecting the rate of photosynthesis and nutrient uptake. Warmer water can increase the metabolic activity of plants, leading to faster growth, while colder water can slow down these processes. It is important for plants to receive water at an optimal temperature to support their growth and development.
Yes, temperature can affect the growth of plants in wetlands. Warmer temperatures can increase the rate of growth in some plants, while extreme temperatures can stress plants and inhibit growth. Different plant species have specific temperature requirements for optimal growth in wetland environments.
Water temperature can affect plant growth by influencing the rate of photosynthesis and nutrient uptake. Warmer water can increase the metabolic activity of plants, leading to faster growth, while colder water can slow down these processes. Extreme temperatures can also stress plants and inhibit their growth.
The growth temperature is the temperature at which an organism exhibits its highest growth rate. Each organism has an optimal growth temperature range where it grows best, with temperatures outside this range resulting in lower growth rates.
As temperature increase pressure will increase
No, fertilizer in water does not lower the temperature. The presence of fertilizer can actually increase water temperature indirectly by promoting the growth of algae and other plants, which can absorb sunlight and heat up the water.
Yes. Bacterial growth increases with temperature or humidity. Lower temperatures will inhibit or completely stop bacterial growth, but not kill bacteria. The best temperature for fastest growth of some bacterial strains (such as E. coli) is the human body temperature at 37°C. However, most species cannot survive in extreme temperatures. One way to kill common bacterial pathogens using heat is by boiling, a common sterilization technique.
An increase in duration of insolation will typically lead to an increase in soil temperature. The longer the soil is exposed to sunlight, the more heat it absorbs, resulting in higher temperatures. This can have various impacts on soil processes, such as affecting microbial activity, nutrient availability, and plant growth.
The ambient ground temperature can significantly impact plant growth and development. Warmer temperatures can speed up plant growth and increase photosynthesis, while colder temperatures can slow down growth and affect nutrient uptake. Extreme temperatures can also stress plants and lead to reduced yields or even plant death. Overall, maintaining an optimal ground temperature is crucial for healthy plant growth and development.