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Calculating Percent by Mass

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Presentation on theme: "Calculating Percent by Mass"— Presentation transcript:

1 Calculating Percent by Mass
( Cu3(PO4)2 ) subscript from P.T. Cu 3 x P X O x = Total mass= amu Mass of metal = amu x = % 380.59 What is the percent by mass of metal in the compound copper II phosphate? ( Cu3(PO4)2 ) Find total mass Find mass due to the part Divide mass of part by total Multiply by 100

2 Chemical Quantities-The Mole
1 dozen = 12 1 gross = 144 1 ream = 500 1 mole = 6.022 x 1023 There are exactly 12 grams of carbon-12 in one mole of carbon-12.

3 I didn’t discover it. Its just named after me!
Avogadro’s Number 6.022 x 1023 is called “Avogadro’s Number” in honor of the Italian chemist Amadeo Avogadro ( ). The number of particles in one mole I didn’t discover it. Its just named after me! Amadeo Avogadro

4 Points to Remember: The elements mass taken in grams is equal to one mole Every mole regardless of mass has 6.022 x 1023 particles in it

5 Calculations with Moles: Converting grams to moles
How many moles of lithium are in 18.2 grams of lithium? 18.2 g Li 1 mol Li = mol Li 2.62 6.94 g Li

6 Calculations with Moles: Converting moles to grams
How many grams of lithium are in 3.50 moles of lithium? 3.50 mol Li 6.94 g Li =24.3 g Li 1 mol Li

7 Diatomic Elements Diatomic elements
H2 Hydrogen N2 Nitrogen O2 Oxygen F2 Fluorine Cl2 Chlorine Br2 Bromine I2 Iodine In nature these elements exist in pairs. Therefore the atomic mass is doubled The SUPER SEVEN- There are seven of them, It starts with element 7- nitrogen- forms a seven and hydrogen!

8 Calculations Diatomic Elements: Converting grams to moles
How many moles of oxygen are in 18.2 grams of lithium? 18.2 g O2 1 mol O2 = 0.569 mol O2 32.0 g O2

9 Calculations Diatomic Elements: Converting moles to grams
How many grams of nitrogen need to be mass out if a 3.50 moles are required for a reaction? 3.50 mol Li 28.0 g N2 =98.0 g N2 1 mol

10 Calculations with Moles: Using Avogadro’s Number
How many atoms of lithium are in 3.50 moles of lithium? 3.50 mol Li 6.022 x 1023 atoms Li = atoms Li 2.11 x 1024 1 mol Li

11 Calculations with Moles: Using Avogadro’s Number
Given 2.18 x 1024 atoms of lithium, how many moles are there? 2.18 x atoms of lithium 1 mol Li = mol Li 3.62 6.022 x 1023 atoms Li

12 Calculations with Moles: Using Avogadro’s Number
How many atoms of lithium are in 18.2 g of lithium? 18.2 g Li 1 mol Li 6.022 x 1023 atoms Li 6.94 g Li 1 mol Li (18.2)(6.022 x 1023)/6.94 = atoms Li 1.58 x 1024

13 What if the substance is not an element!!!!
You must calculate the molar mass for yourself!

14 Finding Molar Mass of a Compound
First decide how many of each type of atom you have. (Remember to multiply a subscript outside a parenthesis to the atoms within) Look up the individual masses on the P.T. Multiply the number of atoms by the mass Add all parts What is the molar mass of copper II phosophate? ( Cu3(PO4)2 ) Cu 3 x P X O x = g/mol

15 Converting to Moles with a Compound
Cindy masses grams of Cu3(PO4)2 , how many moles does she have? 205.3 grams mole Cu3(PO4)2 grams = moles

16 Converting to Moles with a Compound
Cindy needs 2.50 moles of Cu3(PO4)2 , how many grams should she mass out? 2.50 moles grams 1 mole Cu3(PO4)2 = 951 grams

17 (again ignore MM and just divide by A#)
Using A # How many moles are used for an experiment if 2.57 x 1023 molecules of Cu3(PO4)2 are consumed? (again ignore MM and just divide by A#) 2.57 x 1023 molecules of Cu3(PO4) mole 6.022 x = moles Cu3(PO4)2

18 Converting to Grams Charlie needs to use 2.50 x 10-4 moles of Cu3(PO4)2 for an experiment. How many milligrams should she mass out? 2.50 x 10-4 moles grams 1 mole Cu3(PO4)2 = x 10-2 g Therefore: milligrams

19 Using A# How many kilograms are consumed in a reaction if 2.45 x 1024 molecules of Cu3(PO4)2 are used? 2.45 x 1024 molecules of Cu3(PO4) mole grams 6.022 x mole Cu3(PO4)2 = x 103 g Therefore: kilograms

20 Using A# How many molecules are produced in a reaction if 1.25 kilograms of Cu3(PO4)2 are made? 1250 g of Cu3(PO4) mole x 1023 grams mole Cu3(PO4) = Therefore: x molecules


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