What is the mass in grams of 2.0 moles of NO2

Answers

Answer 1
Answer:

Answer:

The mass of 2 moles of NO₂ is 92 grams.

Explanation:

Given that,

Number of moles, n = 2 moles

We need to find the mass of 2 moles of NO₂. We know that the number of moles is given by the formula as :

n=(m)/(M)

m is the given mass

M is the molar mass of NO₂, M=14+16* 2=46\ g

m=n* M\n\nm=2* 46\n\nm=92\ g

So, the mass of 2 moles of NO₂ is 92 grams. Hence, this is the required solution.

Answer 2
Answer: Molar mass NO₂ = 46.0 g/mol

1 mole -------- 46.0 g
2.0 moles ----- ?

Mass (NO₂) = 2.0 x 46.0 / 1

=> 92.0 g

hope this helps!

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mixture or pure substance: 1.blood 2.dyes 3.self-raising flour 4.muesli 5.copper wire 6.distilled water 7.table salt 8.milk 9.bronze 10.tea 11.oxygen 12.air
Activation energy is only required to start an exothermic reaction. True or False?
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A catalyzed reaction will have a ____ activation energy, and this leads to a _____ in the reaction rate. A) lower, decrease
B) lower, increase
C) higher, decrease
D) higher, increase

Answers

I chose d and got it wrong. The correct answer is b.

The answer is D, a catalyst speeds up the reaction rate so a catalyzed reaction will have higher activation energy thus and increase in rate of reaction.

How many mL of 0.200 M KBr would be required to make a 0.0495 M solution of KBr when diluted to 175.0 mL with water?

Answers

The right response is that, Using the 0.200 M KBr solution, about 43.31 mL should be mixed with water to create a 0.0495 M solution with a volume of 175.0 mL.

175.0 mL is the final volume needed for a 0.0495 M solution. To achieve this, we can use the dilution formula and calculate the amount of 0.200 M KBr solution necessary.

V2C2 is equivalent to V1C1, as depicted by the formula C1V1 = C2V2.

Where:

Starting at 0.200 M, C1 indicates the concentration of the solution.

Unknown is the designation for the volume of the first solution that will be used.

The diluted solution's final volume is V2, and its ultimate concentration is marked as C2 (0.0495 M).

To determine V1, rewrite the equation as V1 = (C2 * V2) / C1.

Based on these values:

V2 is 175.0 mL, C1 is 0.200 M, and C2 is 0.0495 M.

Enter the corresponding values to establish V1:

= (0.0495 * 175.0) / 0.200 V1 = 43.3125 mL

You would need around 43.31 mL of the 0.200 M KBr solution to make a 0.0495 M solution (rounded to two decimal places) when diluted to 175.0 mL with water.

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Final answer:

To prepare a 0.0495 M solution of KBr by dilution to 175.0 mL with water, you would need 2.744 mL of 0.200 M KBr solution.

Explanation:

When diluting a solution, the equation M1V1 = M2V2 holds true, where M1 is the initial concentration, V1 is the initial volume, M2 is the final concentration, and V2 is the final volume. In this case, the final concentration (M2) is 0.0495 M, and the final volume (V2) is 175.0 mL.

Rearranging the equation to solve for V1, the initial volume of the concentrated solution needed, we have:

V1 = (M2 * V2) / M1

Substituting the given values:

V1 = (0.0495 M * 175.0 mL) / 0.200 M

V1 ≈ 43.3125 mL

This means you need 43.3125 mL of the 0.200 M KBr solution to achieve a concentration of 0.0495 M. However, since you have the concentrated solution at 0.200 M, you can dilute it further. The volume you take from the concentrated solution (V1) and the volume of water you add (V_water) should sum up to the final volume of 175.0 mL:

V1 + V_water = 175.0 mL

Rearranging to find V_water:

V_water = 175.0 mL - V1

V_water ≈ 175.0 mL - 43.3125 mL

V_water ≈ 131.6875 mL

So, you would take 43.3125 mL of the 0.200 M KBr solution and dilute it with approximately 131.6875 mL of water to get a total volume of 175.0 mL, resulting in a final concentration of 0.0495 M.

Learn more about Water

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What is the total number of neutrons in an atom of O-18?
(1) 18 (3) 10
(2) 16 (4) 8

Answers

the oxygen has 8 protons and 8 neutrons in your nucleus

A = z + n

n = 18 - 8

n = 10 neutrons

Answer (3)

hope this helps!

Final answer:

The total number of neutrons in an atom of O-18 is 10. This is determined by subtracting the atomic number (number of protons) from the atomic mass (number of protons + neutrons).

Explanation:

To find the number of neutrons in an atom, you subtract the atomic number (number of protons) from the atomic mass (number of protons + neutrons). In an atom of O-18 (Oxygen-18), the atomic number of oxygen is 8, which means there are 8 protons. The 18 in O-18 represents the atomic mass. Subtracting the atomic number (8) from the atomic mass (18) gives us the number of neutrons, which is 10.

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The melting and freezing points of a substance are the same temperature.a. True
b. False

Answers

That's false. A melting point is hot/warm, while the freezing point is cold.
False! The melting point and freezing points would differ based on their properties. 

Which solution would most likely cause a plant placed in it to become firmer and more rigid? A. hypertonic B. hypotonic C. isotonic D. osmotic

Answers

"Hypotonic" is the one solution among the choices given in the question that would most likely cause a plant placed in it to become firmer and more rigid. The correct option among all the options that are given in the question is the second option or option "B". I hope the answer has come to your great help.

BaCl2 (aq) and K2CrO4 (aq) combine in a double replacement reaction. Select the reaction below that correctly represents the products of the reaction. BaCl2 (aq) + K2CrO4 (aq) Ba (s) + 2KCl (aq) + 2Cr (s) + 2O2 (g) BaCl2 (aq) + K2CrO4 (aq) BaCrO4 (s) + 2KCl (aq) BaCl 2 (aq) + K2CrO4 (aq) BaCrO3 (s) + 2KCl (aq) + O (g) BaCl2 (aq) + K2CrO4 (aq) BaCrO4 (s) + KCl (aq)

Answers

The correct answer is BaCl2(aq) + K2CrO4(aq) = BaCrO4(s) + 2KCl(aq). According to the solubility of ions, BaCrO4 is insoluble compounds. So the products should be BaCrO4 and KCl.

Answer:

BaCl2(aq) + K2CrO4(aq) = BaCrO4(s) + 2KCl(aq).

Explanation: