Determine the total molecular partition function for gaseous H2O at 1000. K confined to a volume of 2.20 cm³. The rotational constants for water are BA = 27.8 cm=', BB = 14.5 cm¬', and Bc = 9.95 cm=. The vibrational frequencies are 1615, 3694, and 3802 cm. The ground electronic state is nondegenerate. (Note: the Avogadro's constant NA = 6.022 × 1023 mol¬1). %3D Express your answer to three significant figures. ΑΣφ ?
Determine the total molecular partition function for gaseous H2O at 1000. K confined to a volume of 2.20 cm³. The rotational constants for water are BA = 27.8 cm=', BB = 14.5 cm¬', and Bc = 9.95 cm=. The vibrational frequencies are 1615, 3694, and 3802 cm. The ground electronic state is nondegenerate. (Note: the Avogadro's constant NA = 6.022 × 1023 mol¬1). %3D Express your answer to three significant figures. ΑΣφ ?
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Chapter1: Chemical Foundations
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![Part A
Determine the total molecular partition function for gaseous H2O at 1000. K confined to a volume of 2.20
cm³. The rotational constants for water are BA = 27.8 cm, BB = 14.5 cm¯', and
Bc = 9.95 cm. The vibrational frequencies are 1615, 3694, and 3802 cm-. The ground electronic
state is nondegenerate. (Note: the Avogadro's constant NA = 6.022 × 1023 mol-1).
Express your answer to three significant figures.
Ην ΑΣφ
qtotal =
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Transcribed Image Text:Part A
Determine the total molecular partition function for gaseous H2O at 1000. K confined to a volume of 2.20
cm³. The rotational constants for water are BA = 27.8 cm, BB = 14.5 cm¯', and
Bc = 9.95 cm. The vibrational frequencies are 1615, 3694, and 3802 cm-. The ground electronic
state is nondegenerate. (Note: the Avogadro's constant NA = 6.022 × 1023 mol-1).
Express your answer to three significant figures.
Ην ΑΣφ
qtotal =
Submit
Request Answer
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