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ad-work [718]
3 years ago
10

Which begins as radiant energy and can be transformed into electricity?

Chemistry
2 answers:
jeka57 [31]3 years ago
7 0
A. water. hope i helped
strojnjashka [21]3 years ago
6 0
A. water is the most likly choice for the answer

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Block X and Block Y have the same mass. Both blocks are placed into a container of pure water. Block X floats in the water, and
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Answer:

Block Y is heavier than Block X.

Explanation:

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4 years ago
A sample of gas is held at constant volume. If the number of moles of this sample of gas is doubled and the pressure of this sam
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<em>number of moles of gas increases the volume also increases.</em>

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3 years ago
What happens to the surface tension of water on adding detergent to it?
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8 0
4 years ago
For parts a &amp; b below, derive only the initial value problem set up.
Otrada [13]

Answer:

Explanation:

From the given information:

Let y(t) be the amount of sugar in tank A at any time.

Then, the rate of change of sugar in the tank is given by:

\dfrac{dy}{dt}= (rate \ in ) - ( rate \ out )

The rate of the sugar coming into the tank is 0

\text{rate of sugar going out }= \dfrac{y(t) \ pound}{100}\times \dfrac{1 }{min} \\ \\ = \dfrac{y}{100} \ pound/min

So; \\ \\ \\ \dfrac{dy}{dt} = 0 - \dfrac{y}{100}  \\ \\ \implies \dfrac{dy}{y }= -\dfrac{dt}{100 } \\ \\ \implies dx|y| = -\dfrac{t}{100}+C  \\ \\  \implies e*{In|y|}= e^{-\dfrac{t}{100}+C} \\ \\ \implies y = Ce^{-\dfrac{t}{100}}

Initial amount of sugar = 25 Pounds

Now; y(0) = 25

25 = Ce⁰

C = 25

So;  y(t) = 25 e^{-\dfrac{t}{100}

Thus, the amount of sugar at any time t = \mathbf{25 e^{^{-\dfrac{t}{100}}}}

B) For tank B :

\dfrac{dy}{dt}= 1 - \dfrac{y}{50 } \\ \\ \dfrac{dy}{dt}= \dfrac{50-y}{50} \\ \\  \dfrac{dy}{50-y }= \dfrac{dt}{50}

8 0
3 years ago
How many moles of chloride ions are in 0.2550 g of aluminum chloride using AlCl3 's molar mass of 133.34 g / mol:?
Xelga [282]
I got 0.001912 using dimensional analysis. See the picture for work.

7 0
3 years ago
Read 2 more answers
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