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Bezzdna [24]
3 years ago
8

Identify the structure labeled A in the diagram?

Biology
2 answers:
harina [27]3 years ago
8 0

Answer:

PHOSPHATE

Explanation:

ser-zykov [4K]3 years ago
3 0
THE ANSWER IS PHOSPHATE
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Question 8
anastassius [24]
The correct answer to this question is A. 4 haploid sperm. In meiotic gametogenesis, diploid germ cells divide twice to give origin to four haploid products.

5 0
3 years ago
How does the diameter of each ripple change as time passes
VLD [36.1K]

The diameter of the ripple changes by the following equation = \frac{dA}{dt} = \frac{\pi }{2} D . \frac{d(D)}{dt}<u></u>

<u>Explanation:</u>

When a pebble or a rock is dropped in the water then the ripples or waves are formed which starts moving radially outward. As the time passes, the radius of the circle increases.

Let D be the diameter of the circle.

\frac{dD}{dt} will be the rate of change of diameter of the circle with respect to time.

Let A be the area of the circle.

\frac{dA}{dt} will be the rate of change of area of the circle with respect to time.

Area of the circle = \frac{\pi }{4} D^{2}

So,

\frac{dA}{dt} = \frac{d [\frac{\pi }{4}  D^{2}] }{dt}

\frac{dA}{dt} = \frac{\pi }{4} \frac{d[ D(t)^{2}] }{dt}

<u>Using chain rule,</u>

\frac{dA}{dt} = \frac{\pi }{4}  X  \frac{d[D(t)^{2} ]}{d[D(t)]}   X  \frac{d[D(t)]}{dt}

\frac{dA}{dt} = \frac{\pi }{4}  . 2D(t) . \frac{dD}{dt}

\frac{dA}{dt} = \frac{\pi }{2} X D(t) X \frac{d(D)}{dt}

\frac{dA}{dt} = \frac{\pi }{2} D . \frac{d(D)}{dt}

Thus, the following equation determines the change in area in terms of diameter with respect to time :  \frac{dA}{dt} = \frac{\pi }{2} D . \frac{d(D)}{dt}

7 0
3 years ago
The number of in an atom determines the identity of the element
julia-pushkina [17]
The number of protons is the same as the atomic number.

Gold has 79 protons and an atomic number of 79.
6 0
3 years ago
The procces of filtration occures at the
Y_Kistochka [10]

Answer:

The process of filtration (or filtrate formation) occurs at the filtration membrane.

Explanation:

The filtration membrane is located at the boundary between the glomerulus and Bowman's capsule.

:)

5 0
3 years ago
Who was the first person to look at living cells through a microscope
Scrat [10]
Robert Hooke is the answer.
6 0
3 years ago
Read 2 more answers
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