Introduction to High-Throughput Materials Development
- 4.6
Approx. 16 hours to complete
Course Summary
This course offers an introduction to high-throughput experiments, data analysis, and interpretation. Students will learn how to design experiments, analyze data, and interpret results using various high-throughput technologies.Key Learning Points
- Learn how to design and analyze high-throughput experiments
- Understand the principles of data analysis and interpretation
- Gain practical experience with various high-throughput technologies
Job Positions & Salaries of people who have taken this course might have
- USA: $98,000
- India: ₹6,50,000
- Spain: €45,000
- USA: $98,000
- India: ₹6,50,000
- Spain: €45,000
- USA: $55,000
- India: ₹3,50,000
- Spain: €28,000
- USA: $98,000
- India: ₹6,50,000
- Spain: €45,000
- USA: $55,000
- India: ₹3,50,000
- Spain: €28,000
- USA: $67,000
- India: ₹4,50,000
- Spain: €32,000
Related Topics for further study
Learning Outcomes
- Understand the principles of high-throughput experiments
- Gain practical experience with various high-throughput technologies
- Learn how to analyze and interpret high-throughput data
Prerequisites or good to have knowledge before taking this course
- Basic knowledge of biology and statistics
- Access to a computer with internet connection
Course Difficulty Level
IntermediateCourse Format
- Online
- Self-paced
Similar Courses
- Next-Generation Sequencing
- Single-Cell RNA Sequencing
Related Education Paths
Notable People in This Field
- President and Founding Director of the Broad Institute
- Professor of Chemistry and Molecular and Cell Biology
Related Books
Description
This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials.
Outline
- Welcome
- Target Audience
- Course Format and Syllabus
- Guest Instructors
- Recommended Background
- Acknowledgements
- Get More from Georgia Tech
- Consent Form
- Introduction
- Introduction
- Overview of the MGI Approach and How HTMD Fits
- Complexity in Materials Design Part 1
- Complexity in Materials Design Part 2
- Early History Leading up to HTMD
- Recent History of HTMD
- Types of High-Throughput Strategies
- High-Throughput Computational Screening
- Where To Go to Get Started
- Early History Leading up to HTMD
- Recent History of HTMD
- Types of High-Throughput Strategies
- Earn a Georgia Tech Badge/Certificate/CEUs
- Introduction
- Library Preparation
- Introduction
- Introduction to Experimental Design
- Model-Based Experimental Design
- Synthesis of Polymers
- Polymer Processing Part 1
- Polymer Processing Part 2
- Additive Manufacturing – Introduction
- Metal Alloy Libraries – Introduction Part 1
- Metal Alloy Libraries – Introduction Part 2
- Vapor Deposition of Thin Films - Introductory Concepts
- Vapor Deposition of Thin Films - Making Libraries
- Diffusion Multiples
- Additive Manufacturing – Metals
- Bulk Alloy Libraries - Microstructure Gradients
- Microstructure Gradient Alloy Libraries Generated by Non-uniform Heating and Cooling
- Microstructure Gradient Alloy Libraries Generated by Non-uniform Deformations
- Rapid Alloy Prototyping
- Polymer Processing
- Additional details on Diffusion Multiples
- Jominy End Quench Heat Flow Simulation
- Rapid Alloy Prototyping
- Library Preparation
- High-Throughput Characterization of Composition and Structure
- Introduction
- Composition and Structure of Polymers
- Physical Structure of Polymers
- Chemical Structure of Polymers
- Composition of Inorganics
- Detection of Phase Transformations
- Crystal Structure of Inorganics
- Composition and Structure of Polymers
- In-depth reading on HT methods for inorganic materials
- In-depth reading on detection of phase transformations
- High-Throughput Characterization of Composition and Structure
- High-Throughput Property Measurements
- Introduction
- Optical Properties
- Electrical and Thermal Transport Properties
- Introduction
- Strength
- Instrumented Indentation Test
- Measurements using Indentation Methods
- Fracture Toughness
- Indentation Testing - Polymers and Coatings
- Abrasion, Scratch, and Buckling
- Catalysis
- Sorption, Adsorption & Diffusion
- Biological Activity: Cell Culture
- Introduction to Corrosion
- Corrosion Testing Part 1
- Corrosion Testing Part 2
- Optical Properties
- Electrical and Thermal Transport Properties
- Additional details on measuring strength at microscales
- Additional details on spherical nanoindentation stress-strain curves
- In-depth reading
- In-depth reading
- Biological Activity: Cell Culture
- High-Throughput Property Measurements
- Applications
- Introduction
- Polymers for Proton Exchange Membranes in Fuel Cells – Part 1
- Polymers for Proton Exchange Membranes in Fuel Cells – Part 2
- Structural Alloys for Energy and Transport - Part 1
- Structural Alloys for Energy and Transport - Part 2
- Structural Alloys for Energy and Transport - Part 3
- Structural Alloys for Energy and Transport - Part 4
- Exploration of PSP Linkages in Dual Phase Steel - Introduction
- Exploration of PSP Linkages in Dual Phase Steel - Property Measurements
- Exploration of PSP linkages in Dual Phase Steel - Microstructure Quantification
- Exploration of PSP Linkages in Dual Phase Steel - Property-Structure-Process-Linkages
- Exploration of PSP Linkages in Dual Phase Steel - High-throughput Sample Prototyping
- Polymers for Proton Exchange Membranes in Fuel Cells
- Structural Alloys for Energy and Transport
- Take Another Course like this !
- Polymers for Proton Exchange Membranes in Fuel Cells
- Structural Alloys for Energy and Transport
- Exploration of PSP Linkages in Dual Phase Steel
Summary of User Reviews
Pros from User Reviews
- In-depth coverage of high-throughput sequencing
- Engaging teaching style
- Practical exercises help apply knowledge in real-world situations
Cons from User Reviews
- Some users found the course too challenging
- Limited interaction with instructors
- Not suitable for beginners with no prior knowledge of sequencing
- Course materials can be overwhelming
- Some users found the quizzes too difficult