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m_a_m_a [10]
3 years ago
10

Select the correct answer.

Chemistry
1 answer:
Pani-rosa [81]3 years ago
8 0

Answer:

C. Average Speed = 4 m/s

Explanation:

Average speed is defined as total  distance travelled per unit time taken

average speed = \frac{total\ distance\ travelled}{total\ time\ taken}

From t_{1} = 5s to t_{2} = 10 s

Total time = 10 -5 = 5s

Distance travelled in first 5s= s_{1}  = 10 m

Distance travelled in first 10s = s_{2} 30 m

Total distance between 5 s- 10 s = 30 - 10 = 20 m

average speed = \frac{20}{5}

average speed = 4 m/s

!! Please look at the attached image

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Ms. Copeland's students built this model of an aquifer. Once built they added water and then on the top of the "hill" poured a s
Klio2033 [76]

Answer:

C) Remove some of the water. Cover the rocks with an absorbent like kitty litter to remove the oil. Remove the dirty kitty litter. Add the water back.

Explanation:

Oil and water do not mix. The oil will cover the water's surface and anything in the water. So the best idea would be to absorb the oil from the system.

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4 years ago
Which of the following black body curves is representative of stars like our sun?
Bumek [7]
The answer is B
I also did this quiz.
7 0
3 years ago
NaCl + H2O → NaOH + Cl2 + H2 Balance the equation. Choose "blank" if no coefficient is needed. NaCl + H2O → NaOH + Cl2 ++ H2
alexgriva [62]
The balanced equation is:

2NaCl + 2 H2o → 2 NaOH + Cl2 + H2

1- we put 2 NaCl to balance Cl2 on the other side.
2- we put 2 NaOH to balance Na
3- We put 2 H2O to balance H & O on the to sides
5 0
3 years ago
Read 2 more answers
f 65mL of sulfuric acid and 25mL of sodium hydroxide were mixed and the solution had a density of 1.01g/mL, what is the heat of
user100 [1]

The question is incomplete, here is the complete question:

If 65 mL of sulfuric acid and 25 mL of sodium hydroxide were mixed and the solution had a density of 1.01 g/mL, What is the heat of the calorimeter in kJ given the temperature change of the above equation is -5.5 K. You may assume the solution has a heat capacity of 4.180 J/gK. Express your final answer in kJ and with 2 decimal places

<u>Answer:</u> The heat of the calorimeter is 2.09 kJ

<u>Explanation:</u>

To calculate the mass of solution, we use the equation:

\text{Density of substance}=\frac{\text{Mass of substance}}{\text{Volume of substance}}

Density of solution = 1.01 g/mL

Volume of solution = [65 + 25] mL = 90 mL

Putting values in above equation, we get:

1.01g/mL=\frac{\text{Mass of solution}}{90mL}\\\\\text{Mass of solution}=(1.01g/mL\times 90mL)=90.9g

To calculate the heat released by the reaction, we use the equation:

q=mc\Delta T

where,

q = heat released

m = mass of solution = 90.9 g

c = heat capacity of solution = 4.180 J/g.K

\Delta T = change in temperature = -5.5 K

Putting values in above equation, we get:

q=90.9g\times 4.180J/g.K\times (-5.5K)=-2089.8J=-2.09kJ

Heat released by the solution will be equal to the heat absorbed by the calorimeter.

<u>Sign convention of heat:</u>

When heat is absorbed, the sign of heat is taken to be positive and when heat is released, the sign of heat is taken to be negative.

Heat absorbed by the calorimeter = -(-2.09) = 2.09 kJ

Hence, the heat of the calorimeter is 2.09 kJ

8 0
4 years ago
Can u pls help me with this question ​
ziro4ka [17]
I think it is A as solid atoms are close and gases are far away
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