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kirill115 [55]
4 years ago
10

How many moles of ions are in 285 ml of 0.0150 m mgcl2?

Chemistry
2 answers:
Solnce55 [7]4 years ago
7 0
MgCl₂)= Mg²⁺ + 2Cl⁻
V(MgCl₂)=285cm³=0,285dm³
c(MgCl₂)=0,015 mol/dm³
n(MgCl₂)=c·V= 0,015 mol/dm³ · 0,285dm³ = 0,0042 mol
n(Mg²⁺)=n(MgCl₂)=0,0042 mol
n(Cl⁻)=2n(MgCl₂)=0,0084 mol
UNO [17]4 years ago
3 0

Answer : The number of moles of Mg^{2+} and Cl^- ions are 0.00428 and 0.00856 moles respectively.

Explanation :

Molarity : It is defined as the number of moles of solute present in one liter of volume of solution.

Formula used :

\text{Molarity}=\frac{\text{Moles of solute}}{\text{Volume of solution (in L)}}

In this question, the solute is MgCl_2.

Given :

Volume of solution = 285 mL = 0.285 L    (1 L = 1000 mL)

Molarity = 0.0150 M

Now put all the given values in this formula, we get:

0.0150M=\frac{\text{Moles of }MgCl_2}{0.285L}

\text{Moles of }MgCl_2=0.0150M\times 0.285L

\text{Moles of }MgCl_2=0.00428moles

Thus, the number of moles of MgCl_2 are 0.00428 moles.

By the stoichiometry we can say that, 1 moles of MgCl_2 dissociates to give 1 mole of Mg^{2+} ion and 2 moles of Cl^- ions.

So,

Number of moles of Mg^{2+} ion = 0.00428 mole

Number of moles of Cl^- ion = 2 × 0.00428 = 0.00856 mole

Therefore, the number of moles of Mg^{2+} and Cl^- ions are 0.00428 and 0.00856 moles respectively.

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abruzzese [7]

You are calculating the empirical formula of this chemical compound, which is the question with moles, molar mass, and number of moles.

We assume the total mass of this compound is 100g. Because 39.99 +6.727+53.33 =100.047is about 100g. That's the easiest way for us to do it.

First you divide the mass of carbon by its molar mass(relative formula mass)because there is a formula about moles state: number of moles=mass/molar mass.

So, 40/12 is about 3.3. Then, the RFM of H is 1, so the number of mole is 6.7/1=6.7. The RFM of O is 16, whihc means the molar mass od oxygen is 16g, so 53.3/16, which is about 3.3 too.Next, you get the number of moles in order is; 3.3, 6.7, 3.3. Now we need to look at the ratio between these numbers. 3.3 and 3.3 has a common factor of 1, so the subscript of them are both 1. next use 6.7/3.3, and the greatest common factor is 2, so the empirical formula is CH2O.

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To solve this kind of  questions, there are many steps:Know what you are calculating about, it's about the MOLECULAR formula, so you need to find out the number of moles of each elements, then the empirical formula, then the molecular formula.

) Find the RFM of the element, because that is the molar mass(mass of 1 mole) of this element.

2) number of moles= mass/molar mass. use this formula to help you get the number of moles of each element in this compound

3) look at the relationship between the number of moles of each elements. find out the ratio between them.

4)use the molar mass of the whole compound to find out the molecular formula of this compounds. calculate the RFM of the compound in empirical formula form, and then divide the molar mass by the RFM.

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A decomposition reaction always breaks a compound down into two pure elements. True or False.
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Answer:

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<u></u>

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