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OverLord2011 [107]
4 years ago
7

Place the following substance in order of increasing vapor pressure at a given temperature

Chemistry
1 answer:
Dmitrij [34]4 years ago
5 0

Answer: ok that was i am doing

Explanation: like help them

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Which of the following measurements is expressed to four significant figures?
yarga [219]
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8 0
3 years ago
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How many grams are in 3.67 moles of lithium cyanide
OLga [1]

Answer: 120.9 grams

Explanation:

Given the question : How many grams are in 3.67 moles of Lithium cyanide?

Chemical formula of lithium cyanide = LiCN

Molar mass of LiCN: Li = 6.941 ; C = 12, N = 14

LiCN = (6.941 + 12 + 14). = 32.941 g/mol

(Gram of substance / mole of substance) = (molar mass of substance / one mole)

(Gram of substance / 3.67) = (32.941 / 1)

= gram * 1 = 3.67 * 32.941

Gram of substance = 120.89347

= 120.9 grams

5 0
4 years ago
Describe the structure and bonding in graphite.
yan [13]

Answer:

In graphite, each carbon atom is covalently bonded to 3 other carbon atoms. ... These extra electrons are delocalised, or free to move, in the area between layers of carbon atoms. As these electrons are free to move they are able to carry charge and thus graphite can conduct electricity.

Explanation:

3 0
3 years ago
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How many grams of LiOH are produced from 9.89 g of Li?
Nonamiya [84]

Taking into account the stoichiometry of the reaction, 34.12 grams of LiOH are produced from 9.89 g of Li.

In first place, the balanced reaction is:

2 Li + 2 H₂O ⇒ 2 LiOH + H₂

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

  • Li= 2 moles
  • H₂O= 2 moles
  • LiOH= 2 moles
  • H₂= 1 mole

The molar mass of each compound is:

  • Li= 6.94 g/mole
  • H₂O= 18 g/mole
  • LiOH= 23.94 g/mole
  • H₂= 2 g/mole

By reaction stoichiometry, the following amounts of mass of each compound participate in the reaction:

  • Li= 2 moles× 6.94 g/mole= 13.88 g
  • H₂O= 2 moles× 18 g/mole= 36 g
  • LiOH= 2 moles× 23.94 g/mole= 47.88 g
  • H₂= 1 mole× 2 g/mole= 2 g

Then you can apply the following rule of three: if by reaction stoichiometry 13.88 g of Li produce 47.88 g of LiOH, 9.89 g of Li produce how much mass of LiOH?

mass of LiOH=\frac{9.89 g of Li*47.88 g of LiOH}{13.88 f of Li}

Solving:

<u><em>mass of LiOH= 34.12 grams</em></u>

Finalli, 34.12 grams of LiOH are produced from 9.89 g of Li.

Learn more:

  • brainly.com/question/19474065?referrer=searchResults
  • brainly.com/question/20703641?referrer=searchResults
7 0
3 years ago
Select all that apply. Which of the following bases are strong enough to deprotonate CH3CH2CH2Câ¡CH (pKa = 25), so that equilibr
Trava [24]

Answer:

b, c, and d.

Explanation:

In an acid-base reaction, the equilibrium favors the weaker acid, thus, to the reaction favors it, the product must be weaker than the acid given. As higher is the value of pKa, as weak is the acid. Thus, the base must form a conjugate acid with pKa > 25.

The values of pKa can be found in equilibrium tables. The salts will dissociate to form the acids, which will gain one proton (H+)

a. CH3ONa -> Conjugate acid CH3OH, pKa = 15.5

b. NaNH2 -> Conjugate acid NH3, pKa = 38

c. NaH -> Conjugate acid H2, pKa = 35

d. CH3CH2Li -> Conjugate acid CH3CH3, pKa = 50

e. H2O -> Conjugate acid H3O+, pKa = -1.7

f. NH3 -> Conjugate acid NH4+, pKa = 9.2

Thus, the ones with pKa > 25 are NH3, H2, and CH3CH3, thus the bases are NaNH2, NaH, and CH3CH2Li.

5 0
4 years ago
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