National Central University
Uedu Main Site
Explore Uedu
Student Console
Register as Member/Login
Research Informed Consent Center
Survey Center
Teacher Console
Course Setup
Support & Messages
Uptime Data

UeduGPTs

--

Jupyters

19

Local AI

--

Uedu Code

--

CISOSE26 Local AI Uedu Code UG26
中央大學 AQI 45 25°C PM2.5 6
AI Reply Desktop Notifications

Show a desktop notification when the AI TA finishes replying

Chat Message Notifications

Notify me when classmates post messages in the forum

Sound notification

Play an alert sound whenever there is a new notification

Uedu Open / Nanomechanics of Materials and Biomaterials
3.052

Nanomechanics of Materials and Biomaterials

Prof. Christine Ortiz | Spring 2007
Science & Math Chemistry Physics Engineering Biological Engineering Materials Science and Engineering Mechanical Engineering Biomaterials
Go to original course
CC BY-NC-SA 4.0
Course introduction
This course focuses on the latest scientific developments and discoveries in the field of nanomechanics, the study of forces and motion on extremely tiny (10\-9 m) areas of synthetic and biological materials and structures. At this level, mechanical properties are intimately related to chemistry, physics, and quantum mechanics. Most lectures will consist of a theoretical component that will then be compared to recent experimental data (case studies) in the literature. The course begins with a series of introductory lectures that describes the normal and lateral forces acting at the atomic scale. The following discussions include experimental techniques in high resolution force spectroscopy, atomistic aspects of adhesion, nanoindentation, molecular details of fracture, chemical force microscopy, elasticity of single macromolecular chains, intermolecular interactions in polymers, dynamic force spectroscopy, biomolecular bond strength measurements, and molecular motors.
Course Information
SourceMIT 開放式課程
DepartmentMaterials Science and Engineering
LanguageEnglish
Number of videos0
Course videos (0)
No video materials are available for this Course yet
Go to the original course page to view