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Klio2033 [76]
4 years ago
14

An insulating cup contains 200 grams of water at 25 ∘C. Some ice cubes at 0 ∘C is placed in the water. The system comes to equil

ibrium with a final temperature of 12∘C. How much ice in grams was added to the water?
The specific heat of ice is 2090 J/(kg ∘C), the specific heat of water is 4186 J/(kg ∘C), latent heat of the ice to water transition is 3.33 x10^5 J/kg
Physics
1 answer:
Nataly [62]4 years ago
4 0

Answer:

The amount of ice added in gram is 32.77g

Explanation:

This problem bothers on the heat capacity of materials

Given data

Mass of water Mw= 200g

Temperature of water θw= 25°c

Temperature of ice θice= 0°c

Equilibrium Temperature θe= 12°c

Mass of ice Mi=???

The specific heat of ice Ci= 2090 J/(kg ∘C)

specific heat of water Cw = 4186 J/(kg ∘C)

latent heat of the ice to water transition Li= 3.33 x10^5 J/kg

heat heat loss by water = heat gained by ice

N/B let us understand something, heat gained by ice is in two phases

Heat require to melt ice at 0°C to water at 0°C

And the heat required to take water from 0°C to equilibrium temperature

Hence

MwCwΔθ=MiLi +MiCiΔθ

Substituting our data we have

200*4186*(25-12)=Mi*3.3x10^5+

Mi*2090(12-0)

837200*13=Mi*3.3x10^5+Mi*2090

10883600=332090Mi

Mi=10883600/332090

Mi= 32.77g

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The distance traveled by the box over the first 4 s  is 16 m.

To solve the problem above,  First, we apply newton's Fundamental equation of force.

<h3 /><h3>Newton's fundamental equation of force:</h3>

F = ma...................... Equation 1

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make "a " the subject of the equation

a = F/m...................... Equation 2

From the question,

Given:

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Substitute these values into equation 2

a = 10/5

a = 2 m/s²

Finally, we use the equation of motion to calculate the distance it will travel over the given period of time.

<h3><u>Equation of motion</u></h3>

s = ut+at²/2........................... Equation 3

Where:

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Given:

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Hence, the distance traveled by the box over the first 4 s  is 16 m

Learn more about Newton's fundamental equation here: brainly.com/question/13370981

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An apple is dropped out of a 12 meter-high tree. How fast will the Apple be moving right before it hits the ground
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Answer:

15.3 m/s

Explanation:

Given:

v₀ = 0 m/s

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Answer:

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Answer:

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Where:

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