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PHARMACEUTICAL TECHNOLOGY I

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Learning Outcomes

  • evaluate basic concepts in the field of drug delivery systems that is used in Pharmaceutical Technology.
  • uses pharmaceutical information sources (pharmacopoeia, formulary, medical formulary, etc.).
  • Lists in the form of liquid drug delivery systems.
  • defines the concepts of dissolution, solubility and stability.
  • decides the appropriate drug delivery systemaccording tto application purpose by
  • design Solution formulations.
  • identifies the solution identifies and categorizes the solution formulations.
  • Lists the components of the formulation of solutions.
  • determines the solvents and pre-solvent sused in solution by evaluating the the active substance and assistant material.
  • Determines the method of solution preparation.
  • Lists of the controls in Solutions.
  • Plans and manages the work of the stability in solutions.
  • design Suspension formulations.
  • Discusses the advantages and disadvantages of drug delivery systems in the form of suspension.
  • lists of the suspension components of the formulation and examples of drug delivery systems.
  • formulates The suspension in the form of drug delivery systems.
  • Describes the ideal method of preparing the suspension.
  • lists the controls of suspensions.
  • Lists and solves the problems of physical stability of suspensions.
  • prepare emulsion formulations.
  • Discusses the advantages and disadvantages in the form of emulsion drug delivery systems.
  • lists emulsion formulation components in the and examples of drug delivery systems.
  • formulates the emulsionsin the form of drug delivery systems.
  • explains emulsion formation theories.
  • Lists the controls of emulsions.
  • Lists, and solutions to the problems of physical instability of emulsions.
  • evaluate flow prğperties of drug delivery systems in liquid form (solution, emulsion and suspension, etc.).
  • Explain the importance of rheology in terms of Pharmaceutical Technology.
  • defines rheology and defines flow types.
  • Explain the working principles of rheometer.
  • interprets flow patterns.
  • queries the relationship between structure and flow properties of the system.
  • Description
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