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3. why does the spot need to be above the level of the solvent when the…

Question

  1. why does the spot need to be above the level of the solvent when the chromatogram is placed into the solvent? to understand how it can be dissolved.
  2. what does soluble and insoluble inks mean? it can dissolve, insoluble means it wont
  3. what is the function of water in this activity? the solvent because it dissolves it
  4. how would you explain that magic marker is a mixture? use supporting evidence.
  1. what type of mixture is magic marker? solutions and michaniry mixtures
  2. how could permanent marker be separated? alchohol
  3. identify the solute and the solvent in this activity. solvent= what does the dissolving

solute= what is being dissolved

Explanation:

Question 3
Brief Explanations

If the spot is below the solvent level, the ink will dissolve directly in the solvent reservoir instead of moving up the paper via capillary action during chromatography. Placing the spot above the solvent allows the solvent to move up the paper and carry the ink components (via capillary action and differential solubility) to separate them, which is the purpose of chromatography.

Brief Explanations
  • Soluble inks: Inks whose pigment/dye components can dissolve in a given solvent (like water, alcohol). For example, some fountain pen inks dissolve in water.
  • Insoluble inks: Inks whose pigment/dye components do not dissolve in a given solvent. For example, some permanent marker inks are insoluble in water (but may dissolve in alcohol).
Brief Explanations

In chromatography activities (e.g., paper chromatography with ink), water acts as the solvent. It moves up the paper (via capillary action) and dissolves the soluble components of the ink, carrying them up the paper to separate the ink’s components based on their differential solubility and adsorption.

Answer:

To prevent the ink spot from dissolving directly in the solvent reservoir; it allows the solvent to move up the paper (via capillary action) and separate the ink components during chromatography.

Question 4