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Anna007 [38]
4 years ago
7

If 10.95 g K2SO4 is used up in a reaction, How many atoms would that be?

Chemistry
2 answers:
xxMikexx [17]4 years ago
8 0

Answer: 3.79x10²² atoms K2SO4

Explanation: The solution to find the atoms of K2SO4 are as follows.

First find the moles of K2SO4.

10. 95 g K2SO4 x 1 mole K2SO4 / 174 g K2SO4

= 0.063 mole K2SO4

Next find the number of atoms using the Avogadro's number.

0.063 moles K2SO4 x 6.022x10 ²³ atoms K2SO4 / 1 mole K2SO4

= 3.79x10²² atoms K2SO4

Alona [7]4 years ago
5 0

Answer / explanation :

To solve this problem, since we are given the number of grams, we can use this formula to calculate for number of mole

n = m / Mm

n - number of mole

m - number of mass

Mm - number of molar mass

Mm =

K - 39.0983

S - 28.0855

O - 15.999

K2SO4

Molar mass of K2SO4 = 39.0983 * 2 + 28.0855 + 15.999 * 4

Note : there are 2 atoms of K and 4 atoms of O, 1 atom of S in the compound

Mm = 78.1966 + 28.0855 + 63.996

= 170.2781g/mol

n = 10.95g/170.2781g/mol

= 0.0643mol

The number of atom = number of mole * the number of avogadros constant (6.023 * 10^23)

= 0.0643 * 6.023 * 10^23

= 3.873 * 10^22 atoms

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PH = -log([H+])
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[H+][OH-] = Kw
Kw = 1.0*10^-14 at 25 degrees celsius.

[OH-] = Kw/[H+] = (1.0*10^-14)/(1*10^-9) = 1.0*10^-5

The concentration of OH- ions is 1.0*10^-5 M.
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3 years ago
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How much 2.0 M phenylmagnesium chloride solution is needed if adding 2.9 mmol of Grignard reagent to a reaction? Your answer sho
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Answer:

1,45 mL

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In the problem, the phenylmagnesium chloride is the grignard reagent. The volume of 2.0 M phenylmagnesium chloride solution you need to add 2.9 mmol is:

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<em></em>

I hope it helps!

3 0
3 years ago
1. A 2-kg bowling ball sits on top of a building that is 40 meters tall. (5 pts) Circle one: KE / GPE / both ( can you show work
masha68 [24]
Potential energy is energy due to an object's height above the ground.
Potential energy = mass x gravity x height
Kinetic energy is energy due to the motion of the object.
Kinetic energy = 1/2 x mass x velocity²

1.
The ball is not moving and is at a height above the ground so it has only potential energy.
P.E = 2 x 9.81 x 40
P.E = 784.8 J

2.
The ball is moving and has a height above the Earth's surface so it has both kinetic and potential energy.
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3.
The ball has no height above the Earth's surface and is moving so it has only kinetic energy.
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4.
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v = 10 m/s

5.
39200 = 200 x 9.81 x h
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6.
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3 0
3 years ago
Question 2 (1 point)
gregori [183]

Answer:

John Dalton

Explanation:

Both John Dalton and Democritus thought that the atom was an indivisible sphere until J.J. Thompson came out with the plum pudding model. Hope I helped!

5 0
3 years ago
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