Ideal Gas Law-PV=nRT Data, Trial 1 Data, Trial 2 30M 20mL Molarity of HCI (M): 3.0m 20ml 0.0285a Volume of HCI (mL): Mass of Mg (g): Volume of gas (mL): 743•204 mm Hg 43.204mm Hg Barometric Pressure (mm Hg): Temperature (°C): 23.52 ५्र.४८ Write the balanced molecular equation for the reaction of magnesium and HCI to form hydrogen gas and the magnesium salt: Mole of Mg reacted Mole of H2 formed (based on the Balanced equation for the reaction) Vapor Pressure of water (from curve in mmHg): Pressure of H2 from Dalton's Law Pressure of H2 in atm Volume of H2 in liter Temperature in Kelvin Calculation of R Percent error Average R =

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Chapter1: Chemical Foundations
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Ideal Gas Law – PV=nRT
Data, Trial 1
Data, Trial 2
30am
20ml
30M
20mL
Molarity of HCI (M):
Volume of HCI (mL) :
D.0285a
ら55200
743.204 mmHg 43-204mm Hg
Mass of Mg (g):
Volume of gas (mL):
Barometric Pressure (mm Hg):
Temperature (°C):
23-5°€
Write the balanced molecular equation for the reaction of magnesium and HCI to form
hydrogen gas and the magnesium salt:
Mole of Mg reacted
Mole of H2 formed (based on the
Balanced equation for the reaction)
Vapor Pressure of water
(from curve in mmHg):
Pressure of H2 from Dalton's Law
:(BHWW ui)
Pressure of H2 in atm
Volume of H2 in liter
Temperature in Kelvin
Calculation of R
Percent error
Average R =
Transcribed Image Text:Ideal Gas Law – PV=nRT Data, Trial 1 Data, Trial 2 30am 20ml 30M 20mL Molarity of HCI (M): Volume of HCI (mL) : D.0285a ら55200 743.204 mmHg 43-204mm Hg Mass of Mg (g): Volume of gas (mL): Barometric Pressure (mm Hg): Temperature (°C): 23-5°€ Write the balanced molecular equation for the reaction of magnesium and HCI to form hydrogen gas and the magnesium salt: Mole of Mg reacted Mole of H2 formed (based on the Balanced equation for the reaction) Vapor Pressure of water (from curve in mmHg): Pressure of H2 from Dalton's Law :(BHWW ui) Pressure of H2 in atm Volume of H2 in liter Temperature in Kelvin Calculation of R Percent error Average R =
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