Photo AI
Question 7
In the Contact process for the manufacture of sulfuric acid, the key stage is the reaction of sulfur dioxide and oxygen, in contact with a vanadium(V) oxide (V2O5) c... show full transcript
Step 1
Step 2
Answer
A low temperature favours the exothermic reaction in which sulfur trioxide is produced. Since the reaction releases heat, lowering the temperature will shift the equilibrium towards the products (2SO3), thereby increasing the yield.
Step 3
Answer
Increasing pressure favours the side of the equilibrium with fewer moles of gas. In this case, the reactants have 3 moles (2SO2 + O2) and the products have 2 moles of SO3. Therefore, increasing the pressure will shift the equilibrium to the right, favouring the production of SO3.
Step 4
Answer
A catalyst does not affect the position of equilibrium or the yield of products. Instead, it increases the rate at which equilibrium is reached by providing an alternative reaction pathway with a lower activation energy. Thus, while the presence of a catalyst will speed up the reaction process, it will not change the equilibrium position or the yield of SO3.
Step 5
Step 6
Answer
Moles of Reactants:
Initial Molar Concentrations:
At Equilibrium Concentrations:
Kc Calculation:
Thus, the value of Kc is approximately 224.4 under the given conditions.
Report Improved Results
Recommend to friends
Students Supported
Questions answered
Acids, Bases & PH
Chemistry - Leaving Cert
Atomic structure
Chemistry - Leaving Cert
Chemical Equilibrium
Chemistry - Leaving Cert
Electron Arrangement
Chemistry - Leaving Cert
Gas Laws & Properties
Chemistry - Leaving Cert
Ionic & Covalent Bonding
Chemistry - Leaving Cert
Instrumentation & Chromatography
Chemistry - Leaving Cert
OPTION : Atmospheric Chemistry
Chemistry - Leaving Cert
OPTION: Industrial Chemistry
Chemistry - Leaving Cert
OPTION : Materials & Polymers
Chemistry - Leaving Cert
OPTION: Metals
Chemistry - Leaving Cert
Periodic Table of Elements
Chemistry - Leaving Cert
Radioactivity
Chemistry - Leaving Cert
Reaction Rates
Chemistry - Leaving Cert
Stoichiometry, Formulae & Equations
Chemistry - Leaving Cert
Water Analysis
Chemistry - Leaving Cert
Gas Laws, Moles & Gas Properties
Chemistry - Leaving Cert
OPTION : Atmospheric Chemistry
Chemistry - Leaving Cert
OPTION : Industrial Chemistry
Chemistry - Leaving Cert
OPTION : Materials & Polymers
Chemistry - Leaving Cert
OPTION : Metals
Chemistry - Leaving Cert
Oxidation & Reduction
Chemistry - Leaving Cert
Periodic Table
Chemistry - Leaving Cert
Rates of Reaction
Chemistry - Leaving Cert
Spectometry & Chromatography
Chemistry - Leaving Cert
Water & Water Analysis
Chemistry - Leaving Cert
Organic Chemistry
Chemistry - Leaving Cert
Atomic Structure
Chemistry - Leaving Cert
Experiments - All
Chemistry - Leaving Cert
Fuels & Thermochemistry
Chemistry - Leaving Cert
EXPERIMENTS: ALL
Chemistry - Leaving Cert
Fuel & Thermochemistry
Chemistry - Leaving Cert