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Course Outline

Introduction

  • Overview of Nanoscience and Nanotechnology

Utilizing Tools for Nano Measurement

  • Scanning electron microscopy
  • Application of energy-dispersive X-ray spectroscopy
  • Transmitting electron microscopy
  • Employing X-ray and optical characterization techniques

Fabricating Nano-objects

  • Operation of vacuum pumps
  • Thin film vacuum deposition methods
  • Vapor deposition processes
  • Utilizing pattern and self-assembly techniques
  • Etching procedures

Nanochemistry

  • Understanding carbon structures, porous solids, and nanoparticle synthesis
  • Practical applications of Nanochemistry

Nanophysics

  • Exploring quantum effects
  • Using Nanoelectronic devices
  • Optical nanostructures

Nanobiology, Nanomedicine, and Micro-nanofluidics

  • Manipulation of molecules
  • Treatment of diseases through Nanomedicine
  • On-chip liquid manipulation for medical diagnostics
  • Applications in Nanobiology, Nanomedicine, and Micro-nanofluidics

Impact of Nanoscience on Society

  • Assessing the potential dangers of Nanotechnology
  • Societal, health, and environmental considerations

Summary and Next Steps

Requirements

  • A foundational understanding of physical laws and effects within the nano-environment
  • Essential knowledge of the fields encompassing Nanoscience

Target Audience

  • Scientists
  • Individuals with an interest in Nanoscience
 21 Hours

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