The correct answer is cGMP retinal rhodopsin traduction.
Signal transduction is the cellular which comments on signal to another. An ordered sequence of the biochemical reaction is needed for signal transduction processes to take place which leads to cellular response. Some of the signal transduction are
(i) Desensitization of signals
(ii) Amplification of constant signals
(iii) A specification of cues
(iv) Integration of multiple signals.
Some of the components of signal transduction pathway are
Signal, machinery that translates and amplifies to cell response, and receptor for the message.
Th fourth dimension is time and the physical dimension has not yet been discovered
Answer:
A. Fishing for sea life that lives on or near the shore would be more difficult.
C. The California Grunion fish would have a hard time laying eggs.
Explanation:
The moon is an important aspect of Earth's existence. It influences the change of "ocean tides" <em>(high tide and low tide)</em>. If the moon were to suddenly disappear<em> it will present a number of problems. </em>
Firstly, the tides would<u> all remain the same</u><em> (small tides)</em>. They would also be <em>smaller </em>than the usual tide in the world today. Since the tide will be lower than usual, <u>the marine organisms will not survive living on or near the shore anymore. </u>This will make fishing for sea life in these areas more difficult.
The "California Grunion fish" normally lays its eggs along the <em>coastal areas,</em> which is <em>out of the water.</em> If the tide will be lower than usual, then they will have a hard time going to the coastlines for laying eggs.
So, this explains the answers.
Answer:
3.9 billion years
Explanation:
The half-life of potassium-40 is the time it takes for half of it to decay.
After one half-life, half of the original amount will remain.
After a second half-life, half of that amount will remain, and so on.
We can construct a table as follows:

We see that the mass will drop to 10 g after three half-lives.
1 half-life = 1.3 billion years
3 half-lives = 3.9 billion years