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Maru [420]
3 years ago
9

How many molecules are there in 3.1 mol CO2

Chemistry
1 answer:
Archy [21]3 years ago
6 0

Answer:

Abs : 1.8662 × 10^24

Explanation:

1 mol of CO2 contains 6.02 × 10^24 molecules

So, 3.1 mol of CO2 contains 6.02 × 10^24 × 3.1 mol = 1.8662 × 10^24

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Next the students measured the density of aluminum metal. The accepted density for aluminum is 2.7 g/cm3. The students collected
katovenus [111]

Answer:

yo that's too long you should try and my it shorter

3 0
4 years ago
Which of the following is true about lava and magma? A Lava and magma are both types of molten rock. B Magma uses waves to break
Gre4nikov [31]

Answer:

a

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magma is lava and lava is magma

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Pepsi [2]

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radiation, conduction, convection, conduction

5 0
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What is the pH of a Koh solution that has [H+]=1.87×10^-13M
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PH=-log[H⁺]
pH=-log(1.87×10⁻¹³)
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I hope this helps.  Let me know if anything is unclear.
7 0
3 years ago
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In a coffee cup calorimeter, 1.60 g of NH4NO3 is mixed with 75.0 g of water at an initial temperature of 25.00 degrees C. After
igomit [66]

Answer:

+26.6kJ/mol

Explanation:

The enthalpy of dissolution of NH₄NO₃ is:

NH₄NO₃(aq) + ΔH  → NH₄⁺ + NO₃⁻

Where ΔH is the heat of reaction that is absorbed per mole of NH₄NO₃,

The moles that reacts in 1.60g are (Molar mass NH₄NO₃:80g/mol):

1.60g * * (1mol / 80g) = 0.02 moles reacts

To find the heat released in the coffee cup calorimeter, we must use the equation:

Q = m×ΔT×C

Where Q is heat released,

m is mass of the solution

ΔT is change in temperature (Final temperature - Initial temperature)

C is specific heat of the solution (4.18J/g°C)

Mass of the solution is:

1.60g + 75g = 76.60g

Change in temperature is:

25.00°C - 23.34°C = 1.66°C

Replacing:

Q = m×ΔT×C

Q = 76.60g×1.66°C×4.18J/g°C

Q = 531.5J

This is the heat released per 0.02mol. The heat released per mole (Enthalpy change for the dissolution of NH₄NO₃) is:

531.5J / 0.02mol = 26576J/ mol =

+26.6kJ/mol

<em>+ because the heat is absorbed, the reaction is endothermic-</em>

7 0
3 years ago
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