Concept explainers
(a)
Interpretation:
Volume of product produced from
Concept Introduction:
Here,
(a)
Answer to Problem 3C.13E
Volume of product produced from
Explanation of Solution
Balance reaction is given as follows:
According to reaction, 1 mole of
The expression to calculate volume of gas is as follows:
Substitute
Hence volume of product produced from
(b)
Interpretation:
Volume of product produced from
Concept Introduction:
Refer to part (a).
(b)
Answer to Problem 3C.13E
Volume of product produced from
Explanation of Solution
Balance reaction is given as follows:
According to reaction, 3 mole of
The expression to calculate volume of gas is as follows:
Substitute
Hence volume of product produced from
(c)
Interpretation:
Volume of product produced from
Concept Introduction:
Refer to part (a).
(c)
Answer to Problem 3C.13E
Volume of product produced from
Explanation of Solution
Balance reaction is given as follows:
According to reaction, 5 mole of
The expression to calculate volume of gas is as follows:
Substitute
Hence volume of product produced from
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Chapter 3 Solutions
ACHIEVE/CHEMICAL PRINCIPLES ACCESS 1TERM
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- 4arrow_forwardThe gravitational force exerted by an object is given by F=mg,where F is the force in newtons, mis the mass in kilo-grams, and gis the acceleration due to gravity (9.81 m/s²).(a) Use the definition of the pascal to calculate the mass (in kg)of the atmosphere above 1 m² of ocean.(b) Osmium (Z=76) is a transition metal in Group 8B(8) andhas the highest density of any element (22.6 g/mL). If an os-mium column is 1 m² in area, how high must it be for its pressureto equal atmospheric pressure?arrow_forwardWhen limestone (solid CaCO₂) is heated, it decomposes into time (solid CaO) and carbon dioxide gas. This is an extremely useful industrial process of great antiquity, because powdered lime mixed with water is the basis for mortar and concrete - the lime absorbs CO₂ from the air and turns back into hard, durable limestone. Suppose some calcium carbonate is sealed into a limekiln of volume 500. L and heated to 520.0 °C. When the amount of CaCO, has topped changing, it is found that 7.69 kg have disappeared. Calculate the pressure equilibrium constant K, this experiment suggests for the equilibrium between CaCO, and CaO at 520.0 °C. Round your answer to 2 significant digits. Note for advanced students: it's possible there was some error in this experiment, and the value it suggests for K does not match the accepted value. Xarrow_forward
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