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PolarNik [594]
3 years ago
15

Which statements are true based on specific heat? Check all that apply.

Physics
1 answer:
serious [3.7K]3 years ago
5 0

Answer: region with bodies of water surrounding them. A, Land heats up/cools down faster than water.

B, Regions with moderate climates often have large bodies of water surrounding them.

Explanation:

Hope it help

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If you mix 100 g of ice at 0 ∘c with 100 g of boiling water at 100 ∘c in a perfectly insulated container, the final stabilized t
loris [4]

The final stabilized temperature will be between 0 °C and 50 °C.

<h3>Calorimetry:</h3>

The enthalpy of fusion of ice is 334 J/g. The specific heat of water is 4.2 J/g.

To cool 100 g of water from 100 °C to 0 °C would require the removal of

4.2 x 100 x 100 = 42000 J.

To melt the ice would require the addition of

334 x 100 = 33400 J

∴ 42000  > 33400 thus you can melt all the ice and have some heat to spare, specifically 42000 - 33400 = 8600 J

Now use this to warm up 100+100 = 200 g of water at 0 °C

The final stabilized temperature;

8600 / (200 x 4.2) = 10.23 °C

Therefore, the final stabilized temperature is 10.23 °C

Learn more about Calorimetry here:

brainly.com/question/1989313

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4 0
2 years ago
Pls i need this now
dmitriy555 [2]
A

Because all living things have living matter
6 0
3 years ago
Explain how you would draw magnetic field lines in the vicinity of this magnet (it is a normal north and south magnet)
sammy [17]
Can someone please answer this question I'm doing the test now?
3 0
3 years ago
A street light is on top of a 9 foot pole. Joe, who is 3 feet tall, walks away from the pole at a rate of 4 feet per second. At
Gekata [30.6K]

Answer:2 ft/s

Explanation:

Given

Length of Pole is 9 ft

Length of Joe is 3 ft

Joe walks away from Pole at the rate 4 ft/s

Let Joe is x m away from Pole so its shadow length is x'

From Similar triangle concept

\frac{x'}{x+x'}=\frac{3}{9}

3x'=x+x'

x=2x'

and it is given \frac{\mathrm{d} x}{\mathrm{d} t}=4 ft/s

Differentiating

\frac{\mathrm{d} x}{\mathrm{d} t}=2\frac{\mathrm{d} x'}{\mathrm{d} t}

4=2\times \frac{\mathrm{d} x'}{\mathrm{d} t}

\frac{\mathrm{d} x'}{\mathrm{d} t}=2 ft/s

6 0
3 years ago
What type of bond is shown in the figure?
ladessa [460]

Answer:

ionic

Explanation:

6 0
3 years ago
Read 2 more answers
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