An organic compound : any substance that contain CARBON
When we do the calculation, we can write a balanced chemical equation for the burning of CxHy
(CxHy + zO2 -----> xCO2 + y/2H2O)
1. We should calculate the moles of CO2 and H2O produced
2. Find the mole of C and H in the CO2 and H2O
3. Find the ratio of C : H
4. Multiply the ratios to get a whole number
For example...
1. What is the empirical formula of a compound that burns to produce 8.45g of CO2 and 1.73g of H2O?
mol of CO2 = 8.45/44 = 0.19 mol of C in CO2 = 0.19C
mol of H2O = 1.73/18 = 0.10 mol of H in H2O = 0.2H
Mole ratio = 1:1
Therefore,the empirical formula is CH
2. When 6.28g of an organic compound is burned,10.22g of CO2 and 5.18g of H2O is produced?What is the empirical formula?
mole of CO2 = 10.22/44 = 0.232 mol of C in CO2 = 0.232C
mole of H2O = 5.18/18 = 0.288 mol of H in H2O = 0.576H
Check Mass :
0.232C x 10.22g = 2.371g
0.576H x 5.18g = 2.98g
6.28g - 2.371g - 2.98g = 0.929g -----> Oxygen
0.929/16 = 0.058mol Oxygen
Mole ratio = 0.232 : 0.576 : 0.058
= 4 : 10 : 1
Therefore,the empirical formula is C4H10O
Saturday, December 4, 2010
Wednesday, December 1, 2010
Empirical formulas and Molecular formulas
Empirical formula: it gives the lowest term ratio of atoms (or moles) in the formula. *All ionic compounds are empirical formulas*
Ex: C3H6 (propene) ---> molecular formula
CH2 ----> empirical formula
Molecular formula: it is a multiple of the empirical formula and shows the actual number of atoms that combine to form a molecule
Ex. A molecule has an empirical formula of C4H10 and a molar mass of 29 g/mol, what is the molecular formula
Ans: C2H5
Ex: C3H6 (propene) ---> molecular formula
CH2 ----> empirical formula
Molecular formula: it is a multiple of the empirical formula and shows the actual number of atoms that combine to form a molecule
Ex. A molecule has an empirical formula of C4H10 and a molar mass of 29 g/mol, what is the molecular formula
Ans: C2H5
Friday, November 26, 2010
More Mole Conversion(2)
Today we are going to teach you to solve Two Step Mole Calculartion Problems~
If we were asked to convert 22 grams of copper to atoms of copper, we'd have to go from one end of the map to the other. Instead of doing a simple one step calculation, we'd need to do a two-step calculation, with the first step going from grams to moles and the second step going from moles to atoms.
In the next step, we do the same thing over again, except that we need to add another T to the T-chart. When you do this, take the units of the thing at the new top left and put them on the bottom right (in this case, moles). Then take the units of what you want (in this case, atoms) and put it in the top right. Finally, put in your conversion factors, which from the chart above is Avogadro's number, or 6.02E23. Since this number refers to the number of atoms in a mole of a substance, we put this in front of "atoms of copper". Again, put the number "1" in front of moles, because we're saying that there are 6.02E23 atoms in ONE mole of an element.
When we add all these terms in, we can cross out the units that cancel out, as shown. To get the answer, multiply all the numbers on the top together and divide by the numbers on the bottom. Your answer should then be set up like this:
And that's how you do mole problems!
Tuesday, November 23, 2010
More Mole Conversions
So today we did more mole conversions, it involves more than one step, for example,
What is the mass of 2.78 X 10 ^22 Fe atoms: 2.78 X 10^22 / 6.022 X 10^23 X 55.8 = 2.58 g
What is the mass of 2.78 X 10 ^22 Fe atoms: 2.78 X 10^22 / 6.022 X 10^23 X 55.8 = 2.58 g
Thursday, November 18, 2010
Moles
So last class we learned about moles, and more masses. We also learned about Avogadro's hypothesis, he said if there're equal volume of different gases at the same temperature and pressure have the same number of particles. We also learned about different masses, formula mass, molecular mass and molar mass.
6.022 x 10 ^23 particles/mole
I also found this interesting song about mole----http://www.youtube.com/watch?v=8vaaRPBXHgM
The last thing we learned about is Avogadro's number, the number of particles in 1 mole of any amount of substance.
6.022 x 10 ^23 particles/mole
I also found this interesting song about mole----http://www.youtube.com/watch?v=8vaaRPBXHgM
Saturday, November 13, 2010
Graphing
It's always easy to graph a picture by using computer, so that we can use Excel to record all the data and graph those data immediately and correctly.
1)First of all, we have to set up two different objects that we want to graph, one for X-intercept and the other for Y-intercept
2)Record the data you have
3)Select all the data and click SCATTER from chosing the graphing style
4)Decorate your table! (try as much change as you can :)
1)First of all, we have to set up two different objects that we want to graph, one for X-intercept and the other for Y-intercept
2)Record the data you have
3)Select all the data and click SCATTER from chosing the graphing style
4)Decorate your table! (try as much change as you can :)
Wednesday, November 3, 2010
LAB 2E
So by doing today's lab we got deeper into mass, volume and density. We did the lab by using aluminum foils, find out their density and measurements and we also did some questions that are related to the measurements.
So this link below can explain more about density
http://www.youtube.com/watch?v=Q4EBOE4pJyw
So this link below can explain more about density
http://www.youtube.com/watch?v=Q4EBOE4pJyw
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