Course ID: NGM101 | Credits: 3 PDH | Format: PDF  
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Reviews next-generation material science developments, focusing on advanced material classes, performance-driven design, emerging fabrication techniques, and engineering applications across structural, electronic, and functional domains.
Course ID: FUN001 | Credits: 8 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines fundamental material defects and deficiencies, addressing crystallographic imperfections, microstructural flaws, degradation mechanisms, failure initiation, and their implications for engineering performance and reliability.
Course ID: DTM101 | Credits: 6 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Reviews non-destructive testing methods used to evaluate material integrity and structural condition, focusing on ultrasonic, radiographic, magnetic, thermal, and visual inspection techniques.
Course ID: SSR101 | Credits: 4 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines stimuli-responsive materials, focusing on materials that respond to thermal, mechanical, electrical, chemical, or electromagnetic inputs, and their applications in adaptive systems and smart structures.
Course ID: SCM101 | Credits: 2 PDH | Format: PDF 
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Introduces the basic theory and characteristics of superconductivity, exploring material types, zero-resistance behavior, cryogenic requirements, and potential applications in transportation and energy systems.
Course ID: TAL101 | Credits: 2 PDH | Format: PDF 
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Explores the chemistry, structure, and manufacturing processes behind transparent aluminum materials, discussing their mechanical strength, applications in defense and aerospace, and optical transmission properties.
Course ID: SMT101 | Credits: 4 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines smart fluid technologies, focusing on rheological behavior, field-responsive mechanisms, material formulations, and engineering applications such as damping, actuation, and adaptive control systems.
Course ID: HEA101 | Credits: 3 PDH | Format: PDF  
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Reviews high-entropy alloy concepts, addressing compositional design strategies, microstructural behavior, mechanical performance, thermal stability, and emerging engineering applications.

Course ID: ARO101 | Credits: 3 PDH | Format: PDF 
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Examines the composition, porosity, thermal insulation, and structural uses of aerogels, including silica, polymer, and carbon-based variants employed in aerospace and energy sectors.

Course ID: HEM101 | Credits: 2 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines hyperelastic materials and advanced elastomer systems, focusing on constitutive behavior, modeling approaches, durability considerations, and applications requiring large deformation response.
Course ID: BCM101 | Credits: 4 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Reviews cryogenic material science fundamentals, addressing material behavior at extremely low temperatures, fracture risks, thermal contraction, and selection criteria for cryogenic environments.
Course ID: HOI101 | Credits: 2 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines hybrid organic–inorganic materials, with emphasis on perovskites and related systems, addressing structural properties, synthesis methods, stability challenges, and applications in energy and optoelectronic technologies.
Course ID: LAF101 | Credits: 3 PDH | Format: PDF 
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Describes the development of engineered textiles capable of absorbing and converting light energy, with use cases in stealth materials, solar collection, and smart fabric systems.
Course ID: CAE101 | Credits: 3 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines ultra-high-temperature ceramics, focusing on material composition, thermal stability, oxidation resistance, mechanical behavior at extreme temperatures, and engineering applications in aerospace and energy systems.
Course ID: SMA101 | Credits: 6 PDH | Format: PDF 
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Discusses the principles of phase transformation in shape memory alloys, their mechanical response characteristics, and common applications in structural components, robotics, and aerospace engineering.
Course ID: ULM101 | Credits: 3 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Examines ultra-lightweight material systems, focusing on cellular solids, composites, foams, and lattice structures, with emphasis on strength-to-weight optimization and structural efficiency.
Course ID: GMB101 | Credits: 4 PDH | Format: PDF 
Publication Source:
Originally developed content from Cadistics Courseware
Course Overview: Reviews two-dimensional material systems, including graphene and related materials, addressing electronic, mechanical, and thermal properties, fabrication methods, and emerging engineering applications.