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Posted: Tue Jan 04, 2011 8:11 am
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Posted: Tue Jan 04, 2011 8:11 am
i'm really like'n that vine whip pic
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Posted: Tue Jan 04, 2011 8:12 am
OH s**t IT'S THE POLICE!!!
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Posted: Tue Jan 04, 2011 8:14 am
[/slides around] hmm....22 degrees.....oh well >_> [/jumps onto sasuke and whips] Go minion! to the bus stop!
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Posted: Tue Jan 04, 2011 8:17 am
little mintchan [/slides around] hmm....22 degrees.....oh well >_> [/jumps onto sasuke and whips] Go minion! to the bus stop! *FIRES LIGHTNING OUT OF MY a**s, FIRING YOU OFF MY BACK*
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Posted: Tue Jan 04, 2011 8:18 am
i agree with the post above me
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Posted: Tue Jan 04, 2011 8:19 am
The Lady of Nirvana Official Sasuke Uchiha The Lady of Nirvana ... Who here wants to help me with a Chemistry question!?!? 8D WHOEVER HELPS CAN GET A... SLICE OF CHOCOLATE CAKE. .. On the side note, I have the worst headache.. EVER. T.T I KAN DO IT! AHA I love that image. Okay- When 1.570 grams of the compound is vaporized at 300 degrees C and 1.00 atmosphere, the gas occupies a volume of 577 milliliters. What is the molar mass of the compound based on this result? In case Nirvana still needs an answer and ever sees this. It's an Ideal Gas Law question. Use PV=nrT P being pressure in atm V being volume in liters n being the number of mols r being the constant .082 (atm*L/mol*K) T being temperature in Kelvin Plug in everything except for the number of mols. Solve for that. Then use the grams given and number of mols found to find the molar mas, by dividing the mols by the grams.
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Posted: Tue Jan 04, 2011 8:19 am
The Fall is Inevitable i agree with the post above me what? "points up to the above post"
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Posted: Tue Jan 04, 2011 8:19 am
No more burritos for you >.> [/throws smoke bombs and poofs]
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Posted: Tue Jan 04, 2011 8:20 am
oh, did i ever show NUR my favourite pic?
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Posted: Tue Jan 04, 2011 8:21 am
DANDii Lions-- The Lady of Nirvana Official Sasuke Uchiha The Lady of Nirvana ... Who here wants to help me with a Chemistry question!?!? 8D WHOEVER HELPS CAN GET A... SLICE OF CHOCOLATE CAKE. .. On the side note, I have the worst headache.. EVER. T.T I KAN DO IT! AHA I love that image. Okay- When 1.570 grams of the compound is vaporized at 300 degrees C and 1.00 atmosphere, the gas occupies a volume of 577 milliliters. What is the molar mass of the compound based on this result? In case Nirvana still needs an answer and ever sees this. It's an Ideal Gas Law question. Use PV=nrT P being pressure in atm V being volume in liters n being the number of mols r being the constant .082 (atm*L/mol*K) T being temperature in Kelvin Plug in everything accept for the number of mols. Solve for that. Then use the grams given and number of mols found to find the molar mas, by dividing the mols by the grams. NO NONONONO You make Cake Air. Simple... Dandii... You is pretty in Shane's siggy. whee
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Posted: Tue Jan 04, 2011 8:22 am
Snuff that Muffin oh, did i ever show NUR my favourite pic? Goatse? Boxxy getting stabbed in the tits?
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Posted: Tue Jan 04, 2011 8:23 am
Official Sasuke Uchiha DANDii Lions-- The Lady of Nirvana Official Sasuke Uchiha The Lady of Nirvana ... Who here wants to help me with a Chemistry question!?!? 8D WHOEVER HELPS CAN GET A... SLICE OF CHOCOLATE CAKE. .. On the side note, I have the worst headache.. EVER. T.T I KAN DO IT! AHA I love that image. Okay- When 1.570 grams of the compound is vaporized at 300 degrees C and 1.00 atmosphere, the gas occupies a volume of 577 milliliters. What is the molar mass of the compound based on this result? In case Nirvana still needs an answer and ever sees this. It's an Ideal Gas Law question. Use PV=nrT P being pressure in atm V being volume in liters n being the number of mols r being the constant .082 (atm*L/mol*K) T being temperature in Kelvin Plug in everything accept for the number of mols. Solve for that. Then use the grams given and number of mols found to find the molar mas, by dividing the mols by the grams. NO NONONONO You make Cake Air. Simple... Dandii... You is pretty in Shane's siggy. whee Lol Cake air? XD
Thaaaanks!
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Posted: Tue Jan 04, 2011 8:25 am
DANDii Lions-- Official Sasuke Uchiha DANDii Lions-- The Lady of Nirvana Official Sasuke Uchiha The Lady of Nirvana ... Who here wants to help me with a Chemistry question!?!? 8D WHOEVER HELPS CAN GET A... SLICE OF CHOCOLATE CAKE. .. On the side note, I have the worst headache.. EVER. T.T I KAN DO IT! AHA I love that image. Okay- When 1.570 grams of the compound is vaporized at 300 degrees C and 1.00 atmosphere, the gas occupies a volume of 577 milliliters. What is the molar mass of the compound based on this result? In case Nirvana still needs an answer and ever sees this. It's an Ideal Gas Law question. Use PV=nrT P being pressure in atm V being volume in liters n being the number of mols r being the constant .082 (atm*L/mol*K) T being temperature in Kelvin Plug in everything accept for the number of mols. Solve for that. Then use the grams given and number of mols found to find the molar mas, by dividing the mols by the grams. NO NONONONO You make Cake Air. Simple... Dandii... You is pretty in Shane's siggy. whee Lol Cake air? XD
Thaaaanks! Yes when you mix chemicals I don't know you make microscopic floating cake particals.
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Posted: Tue Jan 04, 2011 8:27 am
Official Sasuke Uchiha DANDii Lions-- Official Sasuke Uchiha DANDii Lions-- The Lady of Nirvana AHA I love that image. Okay- When 1.570 grams of the compound is vaporized at 300 degrees C and 1.00 atmosphere, the gas occupies a volume of 577 milliliters. What is the molar mass of the compound based on this result? In case Nirvana still needs an answer and ever sees this. It's an Ideal Gas Law question. Use PV=nrT P being pressure in atm V being volume in liters n being the number of mols r being the constant .082 (atm*L/mol*K) T being temperature in Kelvin Plug in everything accept for the number of mols. Solve for that. Then use the grams given and number of mols found to find the molar mas, by dividing the mols by the grams. NO NONONONO You make Cake Air. Simple... Dandii... You is pretty in Shane's siggy. whee Lol Cake air? XD
Thaaaanks! Yes when you mix chemicals I don't know you make microscopic floating cake particals. Sounds completely and totally logical.
PS. Guess my final grade in gen chem this past semester and I will get you a gar of cake air.
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