A dilute aqueous solution of an organic compound soluble in water is formed by dissolving 2.35 g of the compound in water to form 0.250 L of solution. The resulting solution has an osmotic pressure of 0.605 atm at 25 degrees Celsius. Assuming that the organic compound is a non-electrolyte, what is its molar mass? sample answer format: 555 g/mol (round off your answer to the nearest whole number) * Your answer
A dilute aqueous solution of an organic compound soluble in water is formed by dissolving 2.35 g of the compound in water to form 0.250 L of solution. The resulting solution has an osmotic pressure of 0.605 atm at 25 degrees Celsius. Assuming that the organic compound is a non-electrolyte, what is its molar mass? sample answer format: 555 g/mol (round off your answer to the nearest whole number) * Your answer
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PROBLEMI SOLVING
Solve the following problems. Given atomic
weights: C=12
0=16
H=1
Na=23
A dilute aqueous solution of an
organic compound soluble in water
is formed by dissolving 2.35 g of
the compound in water to form
0.250 L of solution. The resulting
solution has an osmotic pressure
of 0.605 atm at 25 degrees
Celsius. Assuming that the organic
compound is a non-electrolyte,
what is its molar mass? sample
answer format: 555 g/mol (round
off your answer to the nearest
whole number) *
Your answer"
Transcribed Image Text:Quiz - Week #6: Colligative Properti.
A docs.google.com
PROBLEMI SOLVING
Solve the following problems. Given atomic
weights: C=12
0=16
H=1
Na=23
A dilute aqueous solution of an
organic compound soluble in water
is formed by dissolving 2.35 g of
the compound in water to form
0.250 L of solution. The resulting
solution has an osmotic pressure
of 0.605 atm at 25 degrees
Celsius. Assuming that the organic
compound is a non-electrolyte,
what is its molar mass? sample
answer format: 555 g/mol (round
off your answer to the nearest
whole number) *
Your answer
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