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Katen [24]
3 years ago
15

What's the difference between a pill bug and a sow bug?

Biology
1 answer:
Anni [7]3 years ago
5 0
Pill bugs and sow bugs, both represent of the order Isopoda,  and they are regularly found in gardens and in landscaped areas as they eat most on decaying matter. Although pill bugs and sow bugs play a compelling role in the action of decomposition, they can also be regarded as soil pests, most specifically if their population becomes larger. Expect minor damages on the young plant tissue and seedlings when there are pill bugs and sow bugs present in the garden. Pill bugs and sow bugs also feed on young roots, seedlings, vegetables, and fruits that are growing and laying on the soil as well as leaves located at the lower parts of plants. These scavenger species<span> will dash out when they feel disturbed, often hiding under rocks, leaves, garden debris, and any damp areas. On some occasions, pill bugs and sow bugs can also be minor nuisances and annoying pests in the home, but will not actually do any damage to one’s house. Pill bugs and sow bugs cannot survive in a house for more than a day or two if they do not find any damp areas to serve as their homes. Moreover, these two do not sting or bite humans and other </span>animals<span> at home and are not at all dangerous. Despite a long list of similar characteristics, sow bugs and pill bugs have significant differences, too.</span><span><span>
</span></span>
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Explain how the structure of an enzyme makes that enzyme specific
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Hello. this is very simple. i know it and im in middle school. dont highschoolers know that you can just ask google and get a verified answer in just a few seconds?

sighs, well i guess older kids dont get technology as much as we do.

no offense, but seriously if you pay more attention in class you might not be asking this silly question right now.




Molecule which enzyme<span> acts on = the substrate. 5. Substrate molecule is held within the active site by bonds that temporarily form between certain amino acids of the active site and groups on the substrate molecule. ... This folds in a particular way = each </span>enzyme<span> has a </span>specific<span> tertiary </span>structure<span>.</span>

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3 years ago
Match the following terms and definitions. 1. an electrical nerve impulse sent by nerve fibers to the central nervous system for
vladimir1956 [14]

Answer:

1. an electrical nerve impulse sent by nerve fibers to the central nervous system for interpretation. <u>Action potential. </u>

2. neurons that detect chemicals such as those found in food. <u>Chemoreceptors. </u>

3. type of eyes many arthropods have; eyes that protrude outward and consist of many lenses. <u>Compound eyes. </u>

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6. secretion of hormones into the blood stream to affect distant processes. <u>Endocrine.</u>

Explanation:  

An action potential is a change in the internal charge of a cell due to depolarization. These changes allow the transmission of a message from any part of the body to the central nervous system. The central nervous system will interpret the message and will give a response.

There are different types of receptors in our bodies. Chemoreceptors are the ones that detect chemicals and produce an action potential or a neurotransmitter. These receptors respond to chemicals. Another type of receptor is the electroreceptors. They detect electrical fields and are only on the skin of aquatic animals.

Compound eyes have a large number of ommatidia. As a result, the anthropods with this type of eyes have a large view angle. In other words, every ommatidium sees an image, and the final product is a combination of all of them.

The effector is the structure that gives an answer once an affector has sent the message to the nervous system that there was a change in the environment.

There are different kinds of secretions, autocrine, paracrine, and endocrine. In the endocrine secretion, the gland secrets hormones into the bloodstream so that they can travel long distances up to their target cell, which is far from the gland.

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trapecia [35]

Answer:

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Explanation:

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