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yulyashka [42]
3 years ago
9

I need you to answer this

Biology
2 answers:
antoniya [11.8K]3 years ago
4 0

Answer:

Explanation:

its a or b. first try a, second b, third c, last d.

Novay_Z [31]3 years ago
4 0
It is B!

plants which are producers make their own food and absorb from the sun. consumers such as animals or humans eat these plants and then the decomposes eat humans and animals when they die.
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The population of the Earth is roughly eight billion people. If all free electrons contained in this extension cord are evenly s
Agata [3.3K]

Answer:

Explanation:

the same question  was in my book hehehe so i am telling this from my book

Drift velocity: 3.32\cdot 10^{-4}m/s

2) 5.6\cdot 10^{13} electrons per person

For a current flowing through a conductor, the drift velocity of the electrons is given by the equation:

v_d=\frac{I}{neA}

where

I is the current

n is the concentration of free electrons

e=1.6\cdot 10^{-19}C is the electron charge

A is the cross-sectional area of the wire

The cross-sectional area can be written as

A=\pi r^2

where r is the radius of the wire. So the equation becomes

In this problem, we have:

I = 8.0 A is the current

is the concentration of free electrons

d = 1.5 mm is the diameter, so the radius is

r = 1.5/2 = 0.75 mm =0.75.10^-3m

Therefore, the drift velocity is:

vd=8.0/(8.5.10^28)(1.6.10^19)π(0.75.10^-3)^2=3.32.10^-4m/s

2)The total length of the cord in this problem is

L = 3.00 m

While the cross-sectional area is

A=π ^2=π (0.75.10^-3)^2=1.77.10^-6m^2

Therefore, the volume of the cord is

V=AL(1)

The number of electrons per unit volume is n, so the total number of electrons in this cord is

N=nV=nAL=(8.5.10^28)(1.77.10^-6)(3.0)=4.5.10^23

In total, the Earth population consists of 8 billion people, which is

N^1=8.10^9

Therefore, the number of electrons that each person would get is:

N^e=N/N^1=4.5.10^23/8.10^9=5.6.10^13

hope it helps

6 0
3 years ago
How are prokaryotic cells classified by shape? Explain in detail.
kotegsom [21]

Answer:

The two prokaryotic domains (Archaea and Bacteria) each comprise several smaller taxonomic groupings. Within the Archaea are the euryarchaeotes, crenarchaeotes, nanoarchaeotes, and korarchaeotes. Within the Bacteria are proteobacteria, chlamydias, spirochetes, cyanobacteria, and gram-positive bacteria.

Explanation:

hope this helps have a good rest of your day :) ❤

5 0
3 years ago
The frequency of an allele in a population of manatees is 0.15. If the population is at Hardy-Weinberg for this locus, what numb
g100num [7]

Answer: C) 13.5

Explanation:

Given that the frequency of an allele in a manatee population is 0.15 and said population is at Hard-Weinberg (a well-known equation usually used to calculating processes regarding allele and genotype frequencies), the correct number of 600 individuals that should be homozygous for the allele is <u>13.5 individuals.</u>

3 0
3 years ago
An investigation involving osmosis and plant cells was performed by a group of students. Sweet potatoes were used as
Ann [662]

Answer:

A

Explanation:

Water will enter and leave the cells at the same rate via osmosis

5 0
2 years ago
You discover a new type of gland associated with the skin. Chemical analysis of the product shows a secretion has a pH of 4, con
vagabundo [1.1K]
<h2>A) option is correct </h2>

Explanation:

Skin has two types of sweat glands: eccrine and apocrine

Eccrine glands occur over most of the body and open directly onto the surface of skin whereas apocrine glands open into the hair follicle, leading to the surface of the skin and develop in areas abundant in hair follicles, such as on scalp, armpits and groin

The eccrine gland is controlled by the sympathetic nervous system and regulates body temperature

In some animals, when internal temperature rises the eccrine glands secrete water to the skin surface, where heat is removed by evaporation

Eccrine glands when active are considered major thermoregulatory devices

Smaller mammals, such as rodents, cannot endure dehydration and hence possess no eccrine glands at all

3 0
3 years ago
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