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Open Yale Courses is a project of Yale University to share full video and course materials from its undergraduate courses. Open Yale Courses provides free access to a selection of introductory courses, and uses a Creative Commons Attribution-Noncommercial- Share Alike license.
Engineering education at Yale began more than a century before the founding of a School of Engineering. In the first half of the nineteenth century, chemistry professor Benjamin Silliman made fundamental contributions to the fractional distillation of petroleum, and his son, chemistry professor Benjamin Silliman, Jr., commercialized the process as a fuel source. [1]
He joined the faculty at Yale University, as the Goizueta Foundation Professor of Chemical and Biomedical Engineering, in July 2002 and became the first chair of Yale's Department of Biomedical Engineering in 2003. Since he arrived at Yale in 2002 to form the new department, he has seen his faculty group grow to 19 members.
In October 1894, the senior class of Yale’s Sheffield Scientific School (or the “Sheff”) published the first issue of the Yale Scientific Monthly. The Monthly was founded in response to “the rapid growth of the Scientific School, and the important position it was attaining in the affairs of the University", [2] such that "the establishment of a representative undergraduate periodical ...
One year later the Yale Engineering Association (YEA) was founded on December 4, 1914, at a meeting attended by 40 alumni. [6] Membership was open to any Yale graduate although “the association naturally appeals more strongly to those who are engaged in engineering pursuits, transportation or manufacturing."
In 1853 and 1854, science and engineering courses were listed in the Yale College course catalog as offered by the Yale Scientific School. Porter elicited help from his father-in-law, Joseph Earl Sheffield (1793-1882), and in 1858, Sheffield donated over US$100,000 to purchase the old Medical Department building for the scientific school.
A fundamental requirement to meet the ambitious ICME objective of designing materials for specific products resp. components is an integrative and interdisciplinary computational description of the history of the component starting from the sound initial condition of a homogeneous, isotropic and stress free melt resp. gas phase and continuing via subsequent processing steps and eventually ...
The material point method (MPM) is a numerical technique used to simulate the behavior of solids, liquids, gases, and any other continuum material. Especially, it is a robust spatial discretization method for simulating multi-phase (solid-fluid-gas) interactions.
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