The volume strength of 8.9 M H O solution calculated at 273 K and 1 atm is β¦β¦β¦.. (R = 0.0821 L atm K β Redox Reactions and Volumetric Analysis Chemistry Question
Question
The volume strength of 8.9 M H O solution calculated at 273 K and 1 atm is β¦β¦β¦.. (R = 0.0821 L atm K mol ) (rounded off to the nearest integer) 2 2 β1 β1
π‘ Solution & Explanation
**Step 1: Understand Volume Strength** Volume strength of HβOβ is defined as the volume of Oβ gas (at STP: 273 K and 1 atm) produced per unit volume of HβOβ solution. **Step 2: Write the Decomposition Reaction** 2HβOβ β 2HβO + Oββ From stoichiometry: 2 moles of HβOβ produce 1 mole of Oβ **Step 3: Calculate Moles of Oβ from Given Molarity** For 8.9 M HβOβ solution: - 1 L of solution contains 8.9 moles of HβOβ - From the equation: 8.9 moles HβOβ produces (8.9/2) = 4.45 moles of Oβ **Step 4: Calculate Volume of Oβ at STP** Using ideal gas law: PV = nRT V = nRT/P = (4.45 Γ 0.0821 Γ 273)/1 V = 99.99 β 100 L **Step 5: Determine Volume Strength** Volume strength = Volume of Oβ (L) / Volume of solution (L) = 100 L / 1 L = **100** Therefore, the answer is 100.00.