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erastovalidia [21]
3 years ago
5

I pushed a 2 kg car with an 8 N force. Calculate the acceleration.​

Chemistry
1 answer:
KonstantinChe [14]3 years ago
3 0

Answer:

<h2>4 m/s²</h2>

Explanation:

The acceleration of an object given it's mass and the force acting on it can be found by using the formula

a =  \frac{f}{m}  \\

f is the force

m is the mass

From the question we have

a =  \frac{8}{2}  \\

We have the final answer as

<h3>4 m/s²</h3>

Hope this helps you

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If 20.5 g of NO and 13.8 g of O₂ are used to form NO₂, how many moles of excess reactant will be left over?
Nikitich [7]

Answer: The number of moles of excess reactant O_2  left over will be, 0.089 moles.

Explanation : Given,

Mass of NO = 20.5 g

Mass of O_2 = 13.8 g

Molar mass of NO = 30 g/mol

Molar mass of O_2 = 32 g/mol

First we have to calculate the moles of NO and O_2.

\text{Moles of }NO=\frac{\text{Given mass }NO}{\text{Molar mass }NO}

\text{Moles of }NO=\frac{20.5g}{30g/mol}=0.683mol

and,

\text{Moles of }O_2=\frac{\text{Given mass }O_2}{\text{Molar mass }O_2}

\text{Moles of }O_2=\frac{13.8g}{32g/mol}=0.431mol

Now we have to calculate the limiting and excess reagent.

The balanced chemical equation is:

2NO+O_2\rightarrow 2NO_2

From the balanced reaction we conclude that

As, 2 mole of NO react with 1 mole of O_2

So, 0.683 moles of NO react with \frac{0.683}{2}=0.342 moles of O_2

From this we conclude that, O_2 is an excess reagent because the given moles are greater than the required moles and NO is a limiting reagent and it limits the formation of product.

Now we have to calculate the moles of excess reactant O_2  left over.

Number of moles of excess reactant O_2  left over = Given moles - Required moles

Number of moles of excess reactant O_2  left over = 0.431 mol - 0.342 mol

Number of moles of excess reactant O_2  left over = 0.089 mol

Therefore, the number of moles of excess reactant O_2  left over will be, 0.089 moles.

7 0
3 years ago
If a stack of 1,008 alkali fuel cells in series generates 14,800 W of power, and each cell contributes equally to the power of t
USPshnik [31]

Answer:

Each cell contributes power of 14.7 Watts.

Explanation:

Total power generated by alkali furl cells = 14,800 Watts

Total number of fuel cells = 1,008

Power produced by one fuel cell = x

Total power generated = 14,800 Watts=x\times 1,008

x=\frac{14,800 Watts}{1,008}=14.6825 Watts\approx 14.7 Watts

Each cell contributes power of 14.7 Watts.

6 0
3 years ago
Read 2 more answers
The "Land Bridge Theory" is helpful in explaining which of these situations? A) how mountains are formed by water B) how the Ame
erica [24]

Answer:

B

Explanation:

It is believed that early humans used the Bering Land Bridge to migrate from Asia to the Americas

Hope this helps! :)

7 0
3 years ago
A moose eats a lily pad. The food the moose eats is used to make ATP energy that can be used in cellular processes. The products
AURORKA [14]
Its is B (oxygen) and C (glucose)
6 0
3 years ago
What type of map projection makes plotting travel by airplane the easiest? I know it's azimuthal maps but why
KatRina [158]

Answer:

Explanation:

Azimuthal maps projection is the easiest for plotting travel by airplane because Azimuthal maps make the UV plane to be tangent to the globe and it's make the directions from the center of projections to be correct and accurate to any other points , likewise circles are also projected directly to the straight lines on the plane. And this is because Any line that is normally drawn through the tangent point give distance correctly and accurately.

7 0
3 years ago
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