Calcium carbide, CaC 2 , can be produced in an electric furnace by strongly heating calcium oxide (lime) with carbon. The unbalanced equation is :math> CaO ( s ) + C ( s ) → CaC 2 ( s ) + CO ( g ) lcium carbide is useful because it reacts readily with water to form the flammable gas acetylene, C 2 H 2 , which is used ex tensively in the welding industry. The unbalanced equation is :math> CaC 2 ( s ) + H 2 O ( l ) → C 2 H 2 ( g ) + Ca ( OH ) 2 ( s ) at mass of acetylene gas, C 2 H 2 , would he produced by complete reaction of 3.75 g of calcium carbide?
Calcium carbide, CaC 2 , can be produced in an electric furnace by strongly heating calcium oxide (lime) with carbon. The unbalanced equation is :math> CaO ( s ) + C ( s ) → CaC 2 ( s ) + CO ( g ) lcium carbide is useful because it reacts readily with water to form the flammable gas acetylene, C 2 H 2 , which is used ex tensively in the welding industry. The unbalanced equation is :math> CaC 2 ( s ) + H 2 O ( l ) → C 2 H 2 ( g ) + Ca ( OH ) 2 ( s ) at mass of acetylene gas, C 2 H 2 , would he produced by complete reaction of 3.75 g of calcium carbide?
Solution Summary: The author explains that the mass of acetylene gas produced by complete reaction of 3.75 g of calcium carbide should be calculated.
Calcium carbide,
CaC
2
, can be produced in an electric furnace by strongly heating calcium oxide (lime) with carbon. The unbalanced equation is
:math>
CaO
(
s
)
+
C
(
s
)
→
CaC
2
(
s
)
+
CO
(
g
)
lcium carbide is useful because it reacts readily with water to form the flammable gas acetylene,
C
2
H
2
, which is used ex tensively in the welding industry. The unbalanced equation is
:math>
CaC
2
(
s
)
+
H
2
O
(
l
)
→
C
2
H
2
(
g
)
+
Ca
(
OH
)
2
(
s
)
at mass of acetylene gas,
C
2
H
2
, would he produced by complete reaction of 3.75 g of calcium carbide?
Q2: Group these solvents into either protic solvents or aprotic solvents.
Acetonitrile (CH3CN), H₂O, Acetic acid (CH3COOH), Acetone (CH3COCH3),
CH3CH2OH, DMSO (CH3SOCH3), DMF (HCON(CH3)2), CH3OH
Suppose the rate of evaporation in a hot, dry region is 1.76 meters per year, and the seawater there has a salinity of 35 ‰. Assuming a 93% yield, how much salt (NaCl) can be harvested each year from 1 km2 of solar evaporation ponds that use this seawater as a source?
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