MATCH THE CELL ORGANELLE WITH ITS COMMON ANALOGY. (5PTS)Cell Structure
Cell Membrane
Nucleus
Ribosome
Mitochondria
Chloroplasts
Factory Part
a. Battery
b. Factory machines
c. Solar power plants
d. Gates of a school
e. Main office

HELP ASAP
MATCH THE CELL ORGANELLE WITH ITS COMMON ANALOGY. (5PTS) Cell - 1

Answers

Answer 1
Answer: cell membrane: d
nucleus: e
ribosome: b
mitochondria: a
chloroplast: c
Answer 2
Answer:

Final answer:

The cell membrane is like the gates of a school, the nucleus is like the main office, the ribosome is like the factory machines, the mitochondria are like a factory's battery, and chloroplasts are like solar power plants.

Explanation:

In the biology field, the analogy of a cell to a factory is common. In this context, the cell membrane can be likened to the gates of a school (d) as it controls what enters and leaves the cell. The nucleus functions much like the main office (e) in a factory, overseeing all operations. The ribosome, where proteins are made, can be analogized to factory machines (b). The mitochondria, being the powerhouse of the cell, is akin to a factory's battery (a). Lastly, chloroplasts in plants function similarly to solar power plants (c) as they convert sunlight into usable energy.

Learn more about Cell Organelles Analogy here:

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How do we know the frequency of a wave when we can't see it?

Answers

You find the frequency of a wave by V/WL.

Magnification experiment!! explain​

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Answer:

Explanation:

Laboratory is a place where ideas and concepts can be tested through  experiments. Biology, like any other discipline of science, is based on  experimental work and therefore practical forms an integral part of learning.

Magnification by a microscope is a multiple of the X value of the lenses of  the eye piece and objective. For example, a 5X eye piece and a 40X objective  will magnify the image 5 × 40 = 200 times the size of the object. Similarly,  when a 10X eye piece and a 40X objective are used, magnifying power would  be 10 × 40 = 400X. Generally, in a compound microscope, the eye piece  lenses are 10X or 15X and the objective lenses are 10X as well as 40X.

How does the color of light affect the rate of photosynthesis

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The color of light absorbed by photosynthetic pigment determines how effective photosynthesis will be.

PHOTOSYNTHESIS:

  • Photosynthesis is the process by which green plants obtain their food using energy from sunlight.

  • Photosynthesis occurs in the chloroplast of plant cells, which harbors a pigment called CHLOROPHYLL. Chlorophyll is the main photosynthetic pigment in plants and it absorbs light best at red and blue region.

  • This means that when chlorophyll absorbs light at these two regions, photosynthetic rate is boosted and vice versa.

Learn more about photosynthetic rate at: brainly.com/question/9627754?referrer=searchResults

Certain wavelengths of light supply the correct energy for photosynthesis to occur. Reddish and bluish light is absorbed best by chlorophyll, and promotes photosynthesis; green light is absorbed the least (which is why chlorophyll looks green to us), and slows photosynthesis down. So, it is best to use red or blue light when growing plants.

A major function of a plants root is to

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suck up water to turn into food.
radicle. A root's four major functions are 1) absorption of water and inorganic nutrients, 2) anchoring of the plant body to the ground, and supporting it, 3) storage of food and nutrients, 4) vegetative reproduction and competition with other plants.

What tool is used to determine the elements that are in a star

Answers

I'm pretty sure it is a spectrometer (which is used to spread out the rays in the star). Is this what you were wondering? 

Describe two ways in which waves travel, and give an example of each.

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Answer:

Basically, sound waves carry noises through the air to our ears. SEISMIC WAVES travel inside the Earth and cause earthquakes. Light, heat, radio, and similar types of energy are carried by a variety of waves in the ELECTROMAGNETIC SPECTRUM. Some energy waves need a medium, such as water or air, through which to travel.

Explanation: