A gas contains a mixture of NH 3 ( g ) and N 2 H 4 ( g ) , both ofwhich react with O 2 ( g ) to form NO 2 ( g ) and H 2 O( g ) . Thegaseous mixture (with an initial mass of 61.00 g) is reactedwith 10.00 moles O 2 , and after the reaction iscomplete, 4.062 moles of O 2 remains. Calculate the masspercent of N 2 H 4 ( g ) in the original gaseous mixture.
A gas contains a mixture of NH 3 ( g ) and N 2 H 4 ( g ) , both ofwhich react with O 2 ( g ) to form NO 2 ( g ) and H 2 O( g ) . Thegaseous mixture (with an initial mass of 61.00 g) is reactedwith 10.00 moles O 2 , and after the reaction iscomplete, 4.062 moles of O 2 remains. Calculate the masspercent of N 2 H 4 ( g ) in the original gaseous mixture.
Solution Summary: The author explains how the mass percent of N_2 in the original gaseous mixture is calculated.
A gas contains a mixture of
NH
3
(
g
) and N
2
H
4
(
g
)
, both ofwhich react with
O
2
(
g
)
to form
NO
2
(
g
) and H
2
O(
g
)
. Thegaseous mixture (with an initial mass of 61.00 g) is reactedwith 10.00 moles
O
2
, and after the reaction iscomplete, 4.062 moles of
O
2
remains. Calculate the masspercent of
N
2
H
4
(
g
)
in the original gaseous mixture.
3. Put the following species in order of increasing bond length by using molecular orbital diagrams and
calculating their bond orders: F2, F2, F2+
Molecular Orbital Diagram
F2
F2
F2+
Bond Order
Shortest bond:
Longest bond
3. Put the following species in order of increasing bond length by using molecular orbital diagrams and
calculating their bond orders: F2, F2, F2+
Molecular Orbital Diagram
F2
F2
F2+
Bond Order
4. The superoxide ion, Oz, plays an important role in the ageing processes that take place in organisms.
Judge whether Oz is likely to have larger or smaller dissociation energy than 02.
Molecular Orbital Diagram
02
02
Does O2 have larger or smaller dissociation energy?:
Bond Order
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