Identify the corresponding letter from the photo for each listed item found in a microscale glassware kit Erlenmeyer flask Choose... Support rod Choose... Filter flask Choose... Long-necked round bottom flask Choose... Connector for general use Choose Distillation head Choose

Answers

Answer 1

Problem, A - Support Rod B - Long-Necked Round Bottom Flask, C - Connector for General Use ,D - Distillation Head ,E - Erlenmeyer Flask

Distillation Head: The distillation head is the part of a distillation apparatus which is placed on the top of the distillation flask. It is designed to capture as well as control the distillate that is produced during the distillation process. It consists of a  thermometer, a condenser, as well as a collection vessel, such as a flask or a graduated cylinder. The thermometer measures the temperature of the vapor, while the condenser condenses the vapor into liquid. The collection vessel captures the liquid distillate, which is then ready for further processing or analysis. In addition to controlling the distillate, the distillation head also helps to regulate the heat and pressure of the distillation process.

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Related Questions

A 25.0 mL sample of H2SO4 requires 20.0 mL of 2.00 M KOH for complete neutralization. What is the molarity of the acid?

Answers

We must first figure out how many moles of acid the KOH neutralised before we can calculate the molarity of the acid. Using the balanced equation for the neutralisation reaction, we may accomplish this:

K2SO4 + 2H2O = H2SO4 2KOH

According to this equation, complete neutralisation requires two moles of KOH for every mole of H2SO4. We can use the following equation to get the quantity of H2SO4:

(volume H2SO4 x molarity H2SO4 / 1000) = moles H2SO4

We are aware of the H2SO4 volume (25.0 mL), the KOH volume (20.0 mL) required for neutralisation, and the molarity of the KOH (2.00 M). Rearranging the equation above will allow us to get the molarity of the H2SO4.we can rearrange the equation above and substitute in the known values:

molarity H2SO4 = (1000 x moles H2SO4) / volume H2SO4

molarity H2SO4 = (1000 x (20.0 mL x 2.00 M) / (2 x 25.0 mL))

molarity H2SO4 = 8.00 M

So, the molarity of the H2SO4 is 8.00 M.

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