Practical Methods of Inorganic Chemistry (Classic Reprint) - Softcover

F. Mollwo Perkin

 
9781330400685: Practical Methods of Inorganic Chemistry (Classic Reprint)

Synopsis

Essential lab methods for making and handling inorganic reagents. Clear, step‑by‑step guidance helps you perform core preparations safely and reliably.

This edition covers practical procedures for generating and purifying common reagents, from gas synthesis to solid handling. It emphasizes controlled conditions, proper apparatus setup, and careful observation to avoid contamination and decomposition.


  • How to set up and run gas generation and absorption systems for substances like sulphuretted hydrogen and chlorine reagents.

  • Techniques for preparing and purifying reagents such as ferric chloride, antimony chlorides, and various salts.

  • Methods for distillation, including reduced‑pressure distillation to minimize decomposition.

  • Practical cautions on handling volatile, moisture‑sensitive reagents and avoiding exposure to fumes.



Ideal for students and professionals who want tried‑and‑true procedures, clear notes, and hands‑on guidance for inorganic chemistry prep work.

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Product Description

Excerpt from Practical Methods of Inorganic Chemistry

A saturated solution is Obtained when more of the solid substance is brought into contact with the solvent than it is able to dissolve; a portion of the solid then remains undissolved. An unsaturated solution results when less of the solid is brought into contact with the solute than it can dissolve at that temperature. Thus one may have a satur ated solution of, say, sodium sulphate at but it will be unsaturated if the temperature is raised to Fig. 5 graphically represents the solubility of various substances at different temperatures. By examining the curves it will be seen that the solubility Of sodium chloride is almost constant at all temperatures up to while most of the other substances show a progressive and marked increase in solubility as the temperature rises.

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