Transpiration Calculation

Transpiration calculation is the quantitative estimation of water vapor lost from a plant, helping explain how water moves through and leaves plant tissues. It commonly determines the rate of water loss by dividing the change in plant mass by elapsed time, while a potometer estimates water uptake from movement through a capillary tube as a proxy for transpiration. Comparing rates under different light, temperature, humidity, or air movement conditions reveals how stomata and environmental factors regulate water loss. These calculations support investigations of plant water relations, stomatal function, drought responses, and adaptations that balance carbon dioxide uptake with water conservation.

Transpiration Calculation - Related Videos

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JoVE Lab Manual - Biology

Transpiration - Concepts

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2019

Background All living organisms must carry out a set of basic functions in order to maintain themselves. One of these processes involves the transportation of materials throughout the organism. Therefore, organisms need to exchange materials with the environment, which can be seen on the small scale of cells transporting protein and other materials among one another or on a larger scale such as the water cycle, where water is continuously moving on, above, and below the surface of Earth. In...

Transpiration - Student Protocol

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2019

Comparing Transpiration Rates of Leaves ExpandTo begin the experiment to measure the transpiration rates of leaves from different plant species, you will first create a tool called a potometer, using a piece of plastic tubing and 5 mL calibrated pipette. To assemble the device, simply attach the rubber tubing to the tip of the pipette. Then, submerge the device into a bucket of water and move the pipette around under the water to fully fill the tube, taking care not to create bubbles. Next, cap...

Transpiration - Instructor Prep

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2019

Comparing Transpiration Rates of Leaves ExpandBefore beginning the experiments, gather leaves from four plant species that represent different ecological strategies, so that you have enough for one set of leaves per student. NOTE: If leaf-bearing plants are not available locally, an alternative is to grow the plant species of interest in the laboratory, or to purchase plants from a gardening store. Next, cut lengths of rubber tubing to make roughly 50 cm sections and place one piece alongside a...

Regulation of Transpiration by Stomata

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2026

During photosynthesis, plants acquire the necessary carbon dioxide and release the produced oxygen back into the atmosphere. Openings in the epidermis of plant leaves is the site of this exchange of gasses. A single opening is called a stoma—derived from the Greek word for “mouth.” Stomata open and close in response to a variety of environmental cues.Each stoma is flanked by two specialized guard cells that create an opening when these cells take up water. The transport of ions regulates the...

Calculating the Equilibrium Constant

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2020

The equilibrium constant for a reaction is calculated from the equilibrium concentrations (or pressures) of its reactants and products. If these concentrations are known, the calculation simply involves their substitution into the Kc expression. For example, gaseous nitrogen dioxide forms dinitrogen tetroxide according to this equation: When 0.10 mol NO2 is added to a 1.0-L flask at 25 °C, the concentration changes so that at equilibrium, [NO2] = 0.016 M and [N2O4] = 0.042 M. The value of the...

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