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Showing posts with the label NIPER

Standard operating procedure for pH meter

 1). pH meters -  Objective:                      To demonstrate how to use a standard pH meter in the TRACES Centre and undergraduate laboratories. This process explains how to accurately test a solution's pH.  2. Scope: Digital pH meters in the TRACES Centre and the UG Laboratory are affected. These devices include (but are not limited to) Sartorius, Oakton, and Mettler-Toldeo.  3. Responsibility :   Designated persons in the research lab are responsible for training employees and students on this protocol and ensuring that it is followed. It is the responsibility of selected persons (Staff or Students) to adhere to the procedure's guidelines.  4. Equipment :  • pH meter, digital  • Double-junction Ag/AgCl electrode pH electrode  • ATC probe (automatic temperature control) (if available)  • Transfer utensils, pipettes, spatula or capillaries  • Clean stir bars on a stir p...

Named reactions –to be studied for gpat and niper

  Named reactions –to be studied for gpat and niper Acetoacetic Ester Synthesis Acyloin Condensation Aldol Addition + Aldol Condensation Appel Reaction Arbuzov Reaction = Michaelis-Arbuzov Reaction Arndt-Eistert Synthesis Azo Coupling Baeyer-Villiger Oxidation Balz-Schiemann Reaction = Schiemann Reaction Bamford-Stevens Reaction Barton Decarboxylation Barton-McCombie Reaction (Barton Desoxygenation) Baylis-Hillman Reaction Beckmann Rearrangement Benzilic Acid Rearrangement Benzoin Condensation Bergman Cyclization Birch Reduction Bouveault-Blanc Reduction Buchwald-Hartwig Cross Coupling Reaction Cadiot-Chodkiewicz Coupling Cannizzaro Reaction Chugaev Reaction Claisen Condensation Claisen Rearrangement Clemmensen Reduction Cope Elimination Cope Rearrangement Corey-Seebach Reaction Criegee Reaction Curtius Rearrangement Delépine Reaction De Mayo Reaction Dess-Martin Oxidation Diazotisation and Azo Coupling Dieckmann Condensation Diels-Alder Reaction Di-ð-Methane Rearrangement Dötz Rea...