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IRINA_888 [86]
3 years ago
13

Which electrons as the most responsible for the properties of an element?

Chemistry
1 answer:
TEA [102]3 years ago
7 0
I need answer choices
You might be interested in
100 POINTS.
UNO [17]

Answer:

Double Displacement (Metathesis)

Explanation:

Double Displacement (Metathesis) is like a baking soda and vinegar rocket. Only it doesn't explode and make a mess everywhere

6 0
3 years ago
Read 2 more answers
Calculate the new molarity if each of the following dilutions is made. Assume the volumes are additive.
lawyer [7]

A. The new molarity of the diluted solution is 0.047 M

B. The new molarity of the diluted solution is 0.188 M

C. The new molarity of the diluted solution is 4.4 M

D. The new molarity of the diluted solution is 1.28 M

A. How to determine the new molarity

  • Volume of stock solution (V₁) = 26.6 mL
  • Molarity of stock solution (M₁) = 0.127 M
  • Volume of water = 45.4 mL
  • Volume of diluted solution (V₂) = 26.6 + 45.4 = 72 mL
  • Molarity of diluted solution (M₂) =?

M₁V₁ = M₂V₂

0.127 × 26.6 = M₂ × 72

Divide both side by 72

M₂ = (0.127 × 26.6) / 72

M₂ = 0.047 M

B. How to determine the new molarity

  • Volume of stock solution (V₁) = 49.5 mL
  • Molarity of stock solution (M₁) = 0.757 M
  • Volume of water = 150 mL
  • Volume of diluted solution (V₂) = 49.5 + 150 = 199.5 mL
  • Molarity of diluted solution (M₂) =?

M₁V₁ = M₂V₂

0.757 ×49.5 = M₂ × 199.5

Divide both side by 199.5

M₂ = (0.757 × 49.5) / 199.5

M₂ = 0.188 M

C. How to determine the new molarity

  • Volume of stock solution (V₁) = 102 mL
  • Molarity of stock solution (M₁) = 25.8 M
  • Volume of water = 500 mL
  • Volume of diluted solution (V₂) = 102 + 500 = 602 mL
  • Molarity of diluted solution (M₂) =?

M₁V₁ = M₂V₂

25.8 × 102 = M₂ × 602

Divide both side by 602

M₂ = (25.8 × 102) / 602

M₂ = 4.4 M

D. How to determine the new molarity

  • Volume of stock solution (V₁) = 741 mL
  • Molarity of stock solution (M₁) = 1.81 M
  • Volume of water = 308 mL
  • Volume of diluted solution (V₂) = 741 + 308 = 1049 mL
  • Molarity of diluted solution (M₂) =?

M₁V₁ = M₂V₂

1.81 × 741 = M₂ × 1049

Divide both side by 1049

M₂ = (1.81 × 741) / 1049

M₂ = 1.28 M

Learn more about dilution:

brainly.com/question/15022582

#SPJ1

6 0
1 year ago
Identify the reactants in the equation: 6C0, + 6H2O - CHUO+ 60,
Effectus [21]

Answer:

The correct answer is d. 6H20 + 6CO2.

The reactant in the chemical reaction 6H2O + 6CO2 ---> C6H12O6 + 6O2 is 6H20 + 6CO2. Remember that the reactant is always at the left side of the equation. So the correct answer is 6H20 + 6CO2 since it's in the left of the equation. I hope this answer helped you.

Explanation:

5 0
3 years ago
How many different sets of equivalent protons are there for para-xylene (1,4-dimethylbenzene)? only 1 two three four?
ELEN [110]

Answer:

Two  

Step-by-step explanation:

There are two ways to determine the number sets of equivalent protons in a compound.  

(a) By substitution

Replace each H with a different group and see if you get a different compound

For example, the six CH₃ H atoms are an equivalent set, because, if I replace any one of them, I will always get the same compound: 1-chloromethyl-4-methylbenzene (Fig. 1).

Similarly, the four aromatic H atoms are an equivalent set. If I replace any one of them, I will always get the same compound: 2-chloro-1,4-dimethylbenzene (Fig. 2).

Thus, there are two sets of equivalent protons in p-xylene.

(b) By symmetry

Two atoms are equivalent if one can be converted into the other by a <em>symmetry operation</em> on the molecule.

The methyl hydrogens can be interconverted by a combination of <em>reflections</em> about the AB and CD mirror planes and by<em> </em><em>rotation</em>s about the C-C bonds to the ring (Fig. 3).

Similarly, the four aromatic H atoms can be interconverted by a combination of <em>reflections</em> about the AB and CD mirror planes.

Again, we find two sets of equivalent protons.

7 0
3 years ago
The structural level of a protein least affected by a disruption in hydrogen bonding is the
sergeinik [125]
I think the correct answer from the choices listed above is option A. The structural level of a protein least affected by a disruption in hydrogen bonding is the primary level. The other levels are very much affected by hydrogen bonding. Hope this answers the question.
7 0
4 years ago
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