2.Facultative anaerobes can survive either with oxygen or without it. This organism can live and grow in the absence of oxygen. The correct answer is:
Facultative anaerobes
3.Photoautotroph are organisms that carry out photosynthesis. The place where you are likely to find a photoautotroph is near the surface of lakes, streams, and oceans. The correct answer is:
Near the surfaces of lakes and streams
4.Prokaryotes are the smallest and most abundant organisms on the Earth. They range in size from 1 to 5 micrometers. This organisms are classified as Bacteria or Archaea. Most of them exchange genetic information by a process called conjugation. The correct answer is:
Conjugation
I hope it helps, Regards.
Since the other guy did not answer number 5 the answer to your question is
Organisms would not be able to get the nutrients they need to make proteins.
Answer:
The correct answer is b. melanin
Explanation:
The various pigments and nutrients which are found in a cell but are not organelle because they do not perform activities like organelle perform are called cell inclusions. Some of the examples of cell inclusions are lipids, melanin, lipids, etc.
Therefore melanin is considered as inclusion. Melanin is produced by specialized cells called melanocytes from where it gets transported to skin and hair which provided the skin and hair its color. Therefore the right answer is melanin.
Melanin is an inclusion, not an organelle.
An organelle is a specialized structure within a cell that performs specific functions. Based on the options given, melanin is an inclusion, not an organelle.
Melanin is a pigment found in the skin, hair, and eyes, responsible for color. It is not a specialized structure within a cell like lysosome, cilia, and microtubule, which are all organelles.
In conclusion, the correct answer is melanin.
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exocytosis
pinocytosis
phagocytosis
The answer is true . Many soils can be distinguished from other samples by their color or texture
B. hydrogen
C. unstable
D. covalent
Carbon atoms tend to form covalent bonds.
Covalent bonds involve the sharing of electrons between atoms, instead of losing or gaining electrons permanently like in ionic bonds.
This sharing provides a mutually stabilizing relationship between atoms, similar to how neighbors share resources.
The simplest organic molecule, methane, exemplifies this process. Carbon fills its valence shell by linking up with four hydrogen atoms, leading to the formation of methane.
This action is achievable via covalent bonds.
Molecules formed by covalent bonding are generally more stable and stronger than those formed via ionic bonding.
The bonds' strength comes as a result of the close sharing of pairs of electrons.
Therefore, it's accurate to say that carbon atoms, in general, tend to form covalent bonds.
Learn more about covalent bonds here:
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