Udemy - Dielectric Materials - Fundamentals to Modern Technology

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Udemy - Dielectric Materials - Fundamentals to Modern Technology (Size: 3.6 GB)
  1 - AI Applications of dielectric materials.html 47.7 KB
  1 - Advanced Applications.html 140.3 KB
  1 -Course overview.mp4 228.7 MB
  1 -Ferroelectricity.mp4 324 MB
  1 -Introduction to Dielectric materials.mp4 126.4 MB
  1 -Piezoelectricity Introduction, definition and explanation.mp4 225.5 MB
  1 -Pyroelectricity.mp4 323.8 MB
  1 -Types.mp4 334.5 MB
  2 - Applications of pyroelectricity.html 7.4 KB
  2 - Course introduction.html 5.5 KB
  2 - Material.html 8 KB
  2 - Notes.html 37.4 KB
  2 -Electronic polarization.mp4 334.6 MB
  2 -Hysteresis loop of ferroelectric effect.mp4 324 MB
  2 -Production and detection of ultrasonics by piezoelectric effect.mp4 225.5 MB
  3 - Applications of dielectric materials.html 13.3 KB
  3 - Material.html 21.3 KB
  3 -Applications of Ultrasonic waves.mp4 225.6 MB
  3 -Ionic Polarization.mp4 334.5 MB
  4 - Material.html 29 KB
  4 -Orientation polarization.mp4 334.6 MB
  5 - material.html 38.2 KB
  5 -Space charge polarization.mp4 334.6 MB
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 26 total files

Description


Dielectric Materials: Fundamentals to Modern Technology

https://WebToolTip.com

Published 5/2025
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 11h 22m | Size: 3.58 GB

Key Principles and Emerging Technologies in Dielectrics

What you'll learn
Describe the fundamental properties and types of dielectric materials, including their molecular structure, polarization mechanisms, and common applications
Analyze the behavior of dielectric materials under different electric field conditions and explain how these properties influence capacitance and energy storage
Evaluate the suitability of various dielectric materials for specific engineering and electronics applications based on permittivity, dielectric strength, and l
Apply the principles of dielectric theory to solve problems in capacitor design, insulation systems, and electronic component performance

Requirements
Course Prerequisites: Basic Physics: Students should have a foundational understanding of classical physics, particularly electromagnetism (e.g., electric fields, charge, and potential). Introductory Materials Science or Solid-State Physics: Familiarity with atomic structure, bonding, and crystal structures is essential for understanding material behavior. Mathematics Proficiency: Competency in algebra, calculus, and basic differential equations is necessary to follow derivations and solve field-related equations. Electrical Engineering Fundamentals (Recommended): Prior coursework in circuits or electrical systems is helpful, especially for application-oriented topics like capacitors and insulation systems.