Robert Hooke used the name cells to describe their ___

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Answer 1
Answer: because shape and pattern
hope this help


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The DNA in a cell's nucleus encodes proteins that are eventually targeted to every membrane and compartment in the cell, as well as proteins that are targeted for secretion from the cell.For example, consider these two proteins:1. Phosphofructokinase (PFK) is an enzyme that functions in the cytoplasm duringglycolysis.2. Insulin, a protein that regulates blood sugar levels, is secreted from specializedpancreatic cells.Assume that you can track the cellular locations of these two proteins from the time that translation is complete until the proteins reach their final destinations.For each protein, identify its targeting pathway: the sequence of cellular locations in which the protein is found from when translation is complete until it reaches its final (functional) destination. (Note that if an organelle is listed in a pathway, the location implied is inside the organelle, not in the membrane that surrounds the organelle.)Options:Cytoplasm only, ER --> cytoplasm, ER --> Golgi --> outside cell, cytoplasm --> ER --> outside cell, Golgi --> ER --> outside cell, cytoplasm --> Golgi --> outside cell, nucleus --> cytoplasm, ER --> Golgi --> cytoplasm

there are distinct differences and similarities between prokaryotes and eukaryotes; the similarities are

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The similarities are...
- they both have DNA chromosomes (although prokaryotes have DNA chromosomes in the form of a single stranded loop and eukaryotes have DNA chromosomes that are linear and thread like)
- they both have ribosomes (although ribosomes in prokaryotes are scattered in the cytoplasm and ribosomes in eukaryotes are either attached to the rough ER or free in the cytoplasm)
- they both have cell membranes 
- some prokaryotes (bacteria) and some eukaryotes (fungi, plants and some protists) have cell walls

Why are sepals and petals referred to as "accessory parts" (of the plant)?

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The calyx and corolla together compose the perianth. The sepals and petals are accessory parts or sterile appendages; though they protect the flower buds and attract pollinators, they aren't directly involved with sexual reproduction.


 This should be the correct way to explain it 2 you HOPE THAT I HAVE HELPED .
They are not really needed to be able to reproduce offspring. 

Some peeled pieces of apple were placed in distilled water and some in very salty water. The cells in the apple pieces will

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I think that they will gain water in the distilled water and lose water in salty water. I think water will be lost because salt is used as an drying agent, it is why when it snow they will put salt on ice to keep the ice from being slippery because it dries things up. Distill just means to purify something.

Which of these is a likely impact of stronger than normal trade winds in the Pacific Northwest of the United States? A) Jet stream would be displaced northwards causing drought B) Jet stream would be displaced southwards causing drought C) Jet stream would be displaced southwards causing heavy rain and flooding D) Jet stream would be displaced northwards causing heavy rain and flooding Which one?

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Answer:

a

Explanation:

Answer:

The anwer is c

Explanation:

i got it right on my test

Which unicellular algae has cell walls made of silicon?a. diatoms
b. Euglena
c. slime molds
d. Chrysophytes

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The answer to the question stated above is letter a. diatoms.
"Diatoms are unicellular algae that has cell walls made of silicon."

Diatoms are plantlike protists (unicellular algae) that produce thin, delicate cell walls rich in silicon; These planlike protists are members of the phylum Bacillariophyta.
The answer is a. diatoms.
Diatoms are unicellular algae. They are specific for their glass-like cell walls with sculpturing. Their cell wall is made of hydrated silicon dioxide. The cell wall is rigid and transparent because of silicon dioxide. Silicon cell wall cannot decompose, so can be a great help in explaining past conditions.

When fasting continues long beyond glycogen depletion, body protein will be broken down to make glucose?

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Answer;
The above statement is true;
When fasting continues long beyond glycogen depletion, body protein will be broken down to make glucose,

Explanation;
When the body runs low on fuel, it utilizes the stored glycogen in the liver and muscle, which is the primary source of stored energy. The after the depletion of glycogen the body burns fat, and if fasting continues the body begins to break down non essential proteins for energy.  protein is the last source of stored energy available to the body.