Photosynthesis.
The three processes plants must perform in order to survive include respiration, reproduction, and consumption. By performing all these tasks, they are able to survive and create a new generation to carry on.
Plants need carbon dioxide in order to perform photosynthesis....they also do need to do this in an aerobic environment (in air, which does contain oxygen).
A biological catalyst is a substance, usually a protein (such as an enzyme), that increases the rate of a biochemical reaction without being consumed in the process. It lowers the activation energy required for the reaction to occur, making the reaction proceed more quickly.
To determine the order of reaction from a graph, you can look at the slope of the graph. If the graph is linear and the slope is 1, the reaction is first order. If the slope is 2, the reaction is second order. If the slope is 0, the reaction is zero order.
In a first-order chemical reaction, the velocity of the reaction is proportional to the concentration of the reactant. In contrast, in a zero-order reaction, the velocity of the reaction is independent of the concentration of the reactant and remains constant over time.
Yes, plants perform cellular respiration to generate energy by breaking down glucose molecules in the presence of oxygen. This process occurs in plant cells' mitochondria, releasing carbon dioxide, water, and ATP as byproducts.
In order to perform photosynthesis plants need only light, water, and carbon dioxide.. In warmer weather and greater light intensity and with sufficient water, photosynthesis should occur fastest.
Plants need water in order to perform photosynthesis. Photosynthesis = Water + Carbondioxide+Light -----> Oxygen + Carbohydrate Plants need to breakdown H2O molcules in order to make ATP and carry out cellular funtions. Plants need water for similar reasons that people do....except that people don't carry out photosynthesis.
It has to be fixed by things in the soil called nodules, so it can be a form that plants can use in order to get protein to perform photosynthesis.
To determine the reaction order from a table of experimental data, you can plot the concentration of the reactant versus time for each experiment. The reaction order is determined by the slope of the line on the graph. If the slope is constant, the reaction is first order. If the slope doubles, the reaction is second order. If the slope triples, the reaction is third order.
The rate law for a zero-order reaction is rate k, where k is the rate constant. In a zero-order reaction, the rate of the reaction is independent of the concentration of the reactants.
To determine the order of a reaction from a table, you can look at how the rate of the reaction changes with the concentration of reactants. If doubling the concentration of a reactant doubles the rate, the reaction is first order with respect to that reactant. If doubling the concentration quadruples the rate, the reaction is second order. And if doubling the concentration increases the rate by a factor of eight, the reaction is third order.