At the end of this lab, students should know...
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Q1: Why should concentrated acids be poured into a beaker before transferring to a graduated cylinder?
Pouring concentrated acid into a beaker first makes it easier to transfer into a graduated cylinder without spilling. This intermediate step reduces the risk of accidents when handling hazardous concentrated solutions like nitric acid or sulfuric acid during solution preparation.
Q2: What is the purpose of using a volumetric flask when diluting concentrated acids?
A volumetric flask ensures accurate solution concentration by allowing precise volume measurement to the marked line on the neck. This guarantees that diluted acids reach the exact molarity needed for the experiment, such as the 8 M nitric acid or 6.05 M hydrochloric acid required for redox reactions.
Q3: How do you know when a diluted acid solution is properly mixed?
A properly mixed acid solution appears homogeneous, meaning it has a uniform appearance throughout with no visible separation or cloudiness. After stirring on a stir plate with a magnetic stir bar, the solution should look completely clear and consistent before transfer to storage bottles.
Q4: Why must all solutions for this lab be prepared inside a chemical hood?
The chemical hood protects students from hazardous fumes and vapors released during acid dilution and solution preparation. Working inside the hood contains potentially dangerous chemical vapors and prevents inhalation exposure when handling concentrated nitric acid, sulfuric acid, and other reactive solutions.
Q5: What personal protective equipment is required when preparing solutions for redox reaction experiments?
Students must wear a lab coat, chemical splash goggles, and gloves when preparing solutions. This protective equipment shields skin and eyes from chemical splashes and provides a barrier against hazardous acids used in solution preparation for redox reaction labs throughout the experiment.
Q6: How should you prepare a 3 M NaOH solution from solid pellets?
Weigh 18 g of NaOH pellets and transfer them to a 250-mL Erlenmeyer flask. Add 150 mL of deionized water, stir with a magnetic stir bar until pellets dissolve completely and the solution appears homogeneous, then transfer to a labeled polyethylene bottle for storage.
Q7: What glassware and equipment should be set up at each student workstation for redox reaction experiments?
Each workstation requires graduated cylinders, beakers, a filter flask, Büchner funnel, thermometer, stirring rod, hotplate, and pipettes. Additional items include pH paper, filter paper, vacuum tubing, weighing equipment, and a glass thermometer to support solution preparation and redox reaction procedures.