A chemist is given a dry solid mixture containing nickel powder, ammonium chloride (), fine barium sulfate () powder, and sodium chloride (). What is the correct chronological sequence of laboratory procedures required to isolate each pure component from the mixture?
- 1Pass a magnet repeatedly over the dry solid mixture to isolate the nickel powder.
- 2Heat the remaining dry residue in an evaporating dish covered with an inverted funnel to sublime ammonium chloride.
- 3Add distilled water to the solid residue and stir thoroughly to form a mixture of dissolved solute and suspended solid.
- 4Centrifuge the mixture to rapidly spin down fine insoluble barium sulfate particles at the bottom of the tube.
- 5Decant the clear supernatant liquid and evaporate it to dryness to recover sodium chloride crystals.
Cevap
The correct sequence of separation steps is: 1. Pass a magnet over the dry solid mixture to isolate nickel powder. 2. Heat the dry residue to sublime ammonium chloride. 3. Add distilled water to dissolve sodium chloride. 4. Centrifuge the suspension to spin down fine barium sulfate powder. 5. Decant the clear supernatant liquid and evaporate to dryness to recover sodium chloride crystals.
The correct sequence begins with magnetization on the dry solid mixture to remove ferromagnetic nickel. Next, sublimation is performed on the dry residue to separate ammonium chloride, which must occur before adding water because both ammonium chloride and sodium chloride are water-soluble. Distilled water is then added to selectively dissolve sodium chloride while leaving barium sulfate in suspension. Centrifugation rapidly spins down the fine barium sulfate precipitate. Finally, decanting and evaporating the clear supernatant liquid yields pure sodium chloride crystals.
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Anahtar Kavram
Sequential Separation of Multi-Component Mixtures