Answer:
The answer is evaporation
Explanation:
It has a Cell Wall therefore its classified as a plant cell
c. Bases
b. Indicators
d. Home cleaners
Answer:
Indicators
Explanation:
because bases was wrong.
Answer:
hypertonic
Explanation:
During a hurricane, the plants in freshwater marshes die because the invading saltwater is hypertonic (B), meaning it has a higher solute (salt) concentration. This causes water from inside the cells to move out into the surrounding saltwater, which can lead to the cells losing so much water that they die.
During a hurricane, salt water invades fresh water marshes causing many of the plants to die and ultimately the loss of soil. This is because the salt-water solution is Hypertonic to the plants, which ends up drawing water from the plant cells.
A hypertonic solution has higher solute concentration (in this case, salt) than the inside of the plant cells.
Given that osmosis is the movement of water from an area of lower solute concentration to an area of higher solute concentration, the water inside the cells moves out into the surrounding saltwater, which can result in the cells losing too much water and dying.
#SPJ11
B : Stomach
C : Esophagus
The sole reason why red blood cells are unable to replace damaged proteins is that red blood cells lack DNA and cell organelles such as nucleus, ribosomes and mitochondria which are crucial for protein synthesis, assembly and repair. In other words they lack both the information and the machinery for making or repair of proteins.
Due to lack of DNA and cell organelles, red blood cells cannot be able satisfy the central dogma which summarizes synthesis of proteins as DNA → RNA → proteins.
DNA has the genetic information on how proteins should be made, RNA is responsible for transferring the information from DNA in the cell nucleus to the ribosomes in the cytoplasm, then translating or decoding this information, which results in the making of protein.
Red blood cells (RBCs) are unable to replace damaged proteins because they lack a nucleus and organelles, including mitochondria. Instead, new RBCs are constantly produced in the bone marrow to replace damaged or aged ones. When RBCs are damaged or aged, macrophages phagocytize them.
Red blood cells (RBCs) are unable to replace damaged proteins because they lack a nucleus and organelles, including mitochondria. This means that RBCs cannot synthesize new proteins to replace damaged ones. Instead, RBCs have a limited lifespan and are constantly being replaced by new RBCs produced in the bone marrow. When RBCs are damaged or aged, they are phagocytized by macrophages in the spleen, liver, and bone marrow.
#SPJ11