2. Boil I L of distilled water for 5 min to expel CO2. Pour the water into a polyethylene bottle, which should be tightly capped whenever possible. Calculate the volume of . NAOH needed to prepare 1 L of 0.1M NAOH. (The density of se . 1.2 NaOH is per milliliter of solution.) Use a graduated cylinder to transfer this Q1: Exp. 6 - NaOH Procedural Step #2: Please explain how a final calculated NaOH molarity could be affected if one did not boil the water (would the [NaOH] be higher, lower, or no change)? Please explain with a short essay.
2. Boil I L of distilled water for 5 min to expel CO2. Pour the water into a polyethylene bottle, which should be tightly capped whenever possible. Calculate the volume of . NAOH needed to prepare 1 L of 0.1M NAOH. (The density of se . 1.2 NaOH is per milliliter of solution.) Use a graduated cylinder to transfer this Q1: Exp. 6 - NaOH Procedural Step #2: Please explain how a final calculated NaOH molarity could be affected if one did not boil the water (would the [NaOH] be higher, lower, or no change)? Please explain with a short essay.
Principles of Instrumental Analysis
7th Edition
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Chapter29: Supercritical Fluid Chromatography And Extraction
Section: Chapter Questions
Problem 29.7QAP
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