How to Calculate the Atomic Mass of an Unknown Element M in MCl?

In summary, an unknown element called M reacts with Cl to form MCl. When 0.7718 grams of MCl reacts with AgNO3, 2.6091 grams of AgCl is produced. The atomic mass of M cannot be determined with the given information, but additional chemical information is needed to calculate it.
  • #1
transgalactic
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unknown ellement called M reacts with Cl to make MCl
0.7718 gram of MCl reacts with AgNO_3 as a result we get
2.6091 gram of AgCl.
what is the atomic mass of M
??
 
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  • #2
You are not supposed here to ask like that, but to show enough effort to show where you got stuck or made a mistake. However I will tell you you cannot solve this with only the data in the question, you were either given or expected to be able to access other general chemical information.

You might start with the 2.6091 gram of AgCl. I guess from the formula you know what is the ratio of Ag and Cl atoms in AgCl? Can you work out the ratio of grams of Ag and Cl? For that you need information that is not written above. Maybe you can think what you need and then where to find it. From that you may start thinking about the M.
 
Last edited:
  • #3


Based on the information provided, we can use stoichiometry to determine the atomic mass of M. Since 0.7718 grams of MCl reacts with AgNO_3 to produce 2.6091 grams of AgCl, we can set up a ratio of the molar masses of MCl and AgCl to find the molar mass of M.

Molar mass of MCl = molar mass of M + molar mass of Cl = x + 35.45 g/mol

Molar mass of AgCl = molar mass of Ag + molar mass of Cl = 107.87 g/mol + 35.45 g/mol = 143.32 g/mol

Using the ratio:

0.7718 g MCl/2.6091 g AgCl = (x + 35.45 g/mol)/(143.32 g/mol)

Solving for x, we get the molar mass of M to be 38.98 g/mol. This is the atomic mass of M, as the atomic mass of an element is equivalent to its molar mass in grams.
 

Related to How to Calculate the Atomic Mass of an Unknown Element M in MCl?

1. What is atomic mass?

Atomic mass is the average mass of an atom of an element, taking into account the different isotopes of that element and their relative abundance. It is measured in atomic mass units (amu) and is typically listed on the periodic table under each element's symbol.

2. How is atomic mass calculated?

Atomic mass is calculated by taking the sum of the mass of each isotope of an element, multiplied by its relative abundance, and then dividing by the total number of isotopes. This gives the average mass of an atom of that element.

3. Why is atomic mass often a decimal number?

Atomic mass is often a decimal number because it is an average that takes into account the different masses of an element's isotopes. These isotopes have slightly different masses due to differences in the number of neutrons in their nuclei, which can affect the overall atomic mass.

4. Is atomic mass the same as atomic weight?

No, atomic mass and atomic weight are not the same. Atomic mass is the average mass of an atom of an element, while atomic weight takes into account the abundance of each isotope of that element in nature. Atomic weight is also measured in atomic mass units (amu), but it can be a decimal or a whole number.

5. How is atomic mass related to the number of protons and neutrons in an atom?

Atomic mass is related to the number of protons and neutrons in an atom because it is the sum of these particles that make up an atom's mass. Protons and neutrons have a mass of approximately 1 amu each, while electrons have a much smaller mass and are not included in calculating atomic mass.

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