The results will differ according to white light or no light
The pH of the water will increase when elodea is exposed to light. This is because during photosynthesis, elodea will take in carbon dioxide, which will result in a decrease in carbonic acid concentration, leading to an increase in pH.
Adding fresh water to elodea in salt water would cause the elodea cells to absorb more water by osmosis. This would lead to an increase in turgor pressure within the cells, causing them to become firm and potentially burst due to the difference in salt concentration between the cell and the surrounding salt water.
it will die
he would stay the same
R136a1's heat would probably vaporize all of the planets.
The pH of the water will increase when elodea is exposed to light. This is because during photosynthesis, elodea will take in carbon dioxide, which will result in a decrease in carbonic acid concentration, leading to an increase in pH.
Cytolysis does not happen in the elodea because of the concentration of its cells. The concentration that surrounds the cells are usually less concentrated and therefore prevent cytolysis from occurring.
it would make a fart noise and die ha ha
Human Beings will be replaced by robots
Experimental data is an important component of any scientific paper.After looking at the data, we can compare that to our hypothesis and see if it matches to our tentative idea.Analysis of experimental data also helps us to draw a conclusion of an experiment.
you get bit and replaced
Animal Paradise happened in 2007.
Animal Genius happened in 2008.
Animal Boxing happened in 2008.
nothing would happen
Adding fresh water to elodea in salt water would cause the elodea cells to absorb more water by osmosis. This would lead to an increase in turgor pressure within the cells, causing them to become firm and potentially burst due to the difference in salt concentration between the cell and the surrounding salt water.
Nothing. The DNA of one animal cannot be incorporated into that of another animal. This must be done by "gene splicing" where one part of normal DNA is chemically removed and replaced by a different gene (or genes) at a cellular level.