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Pharmaceutical Engineering

- Practical Manual (Unit Operations)

Om Pharmaceutical Engineering

1. Determination of Radiation Constant of Iron Cylinder 2. Determination of Radiation Constant of Brass Cylinder 3. Determination of Radiation Constant of Copper Cylinder 4. Heat Loss by Natural Convection and Radiation (Painted Flask) 5. Heat Transfer by Natural Convection and Radiation (Unpainted Flask) 6. Size Reduction and Separation 7. Flow of Fluids (Frictional Factor) 8. Flow of Fluids (Reynold’s Number) 9. Rate of Drying 10. Particle Size Analysis 11. Effect of Filter Aids on Rate of Filtration 12. Factors Affecting the Rate of Filtration 13. Determination of Humidity of Air (By Dew Point & Psychrometric Methods) 14. Determination of Crystallization 15. Simple Distillation 16. Steam Distillation 17. Verification of Stoke’s Law 18. Sedimentation by Centrifugation 19. Overall Heat Transfer Coefficient (Counter Current Flow) 20. Overall Heat Transfer Coefficient (Parallel Flow) 21. Determination of Azeotropic Mixtures 22. Construction of Boiling Point Diagram 23. Efficiency of Single And Multiple Extractions 24. Determination of Solubility Curve 25. Fluidized Bed Dryer (Demonstration) 26. Filter Press (Demonstration) 27. Evaporation Under Reduced Pressure (Roto Evaporator–Demonstration) 28. Extraction of Organised Substances by Percolation Method 29. Continuous Hot Extraction Method 30. Factors Affecting the Rate of Evaporation 31. Effect of Particle Size on Sedimentation Rate

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  • Språk:
  • Engelsk
  • ISBN:
  • 9789389974874
  • Bindende:
  • Hardback
  • Sider:
  • 148
  • Utgitt:
  • 26. november 2017
  • Utgave:
  • 2
  • Dimensjoner:
  • 156x234x10 mm.
  • Vekt:
  • 386 g.
  • BLACK NOVEMBER
  Gratis frakt
Leveringstid: 2-4 uker
Forventet levering: 19. desember 2024

Beskrivelse av Pharmaceutical Engineering

1. Determination of Radiation Constant of Iron Cylinder 2. Determination of Radiation Constant of Brass Cylinder 3. Determination of Radiation Constant of Copper Cylinder 4. Heat Loss by Natural Convection and Radiation (Painted Flask) 5. Heat Transfer by Natural Convection and Radiation (Unpainted Flask) 6. Size Reduction and Separation 7. Flow of Fluids (Frictional Factor) 8. Flow of Fluids (Reynold’s Number) 9. Rate of Drying 10. Particle Size Analysis 11. Effect of Filter Aids on Rate of Filtration 12. Factors Affecting the Rate of Filtration 13. Determination of Humidity of Air (By Dew Point & Psychrometric Methods) 14. Determination of Crystallization 15. Simple Distillation 16. Steam Distillation 17. Verification of Stoke’s Law 18. Sedimentation by Centrifugation 19. Overall Heat Transfer Coefficient (Counter Current Flow) 20. Overall Heat Transfer Coefficient (Parallel Flow) 21. Determination of Azeotropic Mixtures 22. Construction of Boiling Point Diagram 23. Efficiency of Single And Multiple Extractions 24. Determination of Solubility Curve 25. Fluidized Bed Dryer (Demonstration) 26. Filter Press (Demonstration) 27. Evaporation Under Reduced Pressure (Roto Evaporator–Demonstration) 28. Extraction of Organised Substances by Percolation Method 29. Continuous Hot Extraction Method 30. Factors Affecting the Rate of Evaporation 31. Effect of Particle Size on Sedimentation Rate

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