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frosja888 [35]
2 years ago
15

All of the following are examples of organic matter in soil except please and thanks!

Biology
1 answer:
Jet001 [13]2 years ago
4 0

Answer:

Water

Explanation: Soil contains various types of the components in it. The organic matter present in the soil provides fertility to the soil.

The minerals and various types of the salts is also present in soil that helps in the growth of the plants. The dead and decaying organic matter, fungi and decaying plants adds fertility to soil being organic material.

So, Water is not an organic matter.

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Explanation:

The two main plant tissue that works together to release sugar and carry hormones so that reproduction can take place are: The ground and the vascular tissue.

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A marsh supports a large population of cattails, which are tall wetland plants. Purple loosestrife, an invasive wetland plant, i
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Drowsiness, paralysis, numbness, poor coordination, and reduced heart rate are common side effects of __________.
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Imagine that two unlinked autosomal genes with simple dominance code in goats for size, where T is tall and t is short, and for
Fittoniya [83]

Answer:

(A)  0.0625

(B)  25%

Explanation:

A

Given that ;

T is tall

t is short

R is red

r is tan.

If a short, tan male goat mates with a tall, red female goat of an unknown genotype;

Let's take it one after the other;

A short tan male goat = ttrr

The female goat is an unknown genotype, we will have to determine that but we were told that it is tall and red

∴ For tall it is T and red is R;

Definitely, the female genotype should be T_ R_;

the probability genotype of the female for each allele is either:

-   T<u>T </u>or T<u>t</u>

-   R<u>R </u> or R<u>r</u>

<u />

However,  from above;

the probability that the female will be Tt = \frac{1}{2}

the probability that the female will be Rr = \frac{1}{2}

the probability that the recessive allele 't' will be transferred to the offspring = \frac{1}{2}

the probability that the recessive allele 'r' will be transferred to the offspring = \frac{1}{2}

∴ the probability that they would produce short, tan offspring (ttrr) will be;

= (\frac{1}{2})^{4}

= (\frac{1}{16})

= 0.0625

(B)

One of a pea plants is homozygous recessive for both genes, resulting in the cross Yy Rr × yy rr. Calculate the percentage of green and round offspring.

For Color, Let;

Y = Yellow

y = Green

For shape, Let;

R = Round

r = wrinkled

If a cross occur between  Yy Rr × yy rr.   (i.e yellowround and green wrinkled)

the percentage of green and round offspring will be;

If Yy Rr self crossed; we have the following traits (YR, Yr, yR, yr)

yy rr will result to (yr, yr)

                   YR                    Yr                    yR                    yr

yr                 YyRr                 Yyrr                 yyRr                 Yyrr

yr                 YyRr                 Yyrr                 yyRr                 Yyrr

                   Yellow              Yellow            Green              Green

                   Round               Wrinkled        Round              Wrinkled

Therefore, the percentage of Green and Round offsprings from above is:

= \frac{2}{8}*100%%

=\frac{1}{4}*100%

= 25%

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Hello! The correct answer for the blank is: Water.


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