Interdisciplinary Design Experience for the Masses

AEI 2011 ◽  
2011 ◽  
Author(s):  
Brent Nuttall ◽  
Jill Nelson ◽  
Allen C. Estes
Author(s):  
Charles Kim ◽  
Joseph Tranquillo

The KEEN Winter Interdisciplinary Design Experience (K-WIDE) is an immersive co-curricular program that exposes students to authentic open-ended design inductively. K-WIDE occurs outside of the curriculum and does not bear any credit. Students do not receive any pay for the program, and their only motivation is to learn about design. We believe that our pedagogical approach which immerses students in intensive design, provides opportunities to learn and apply hands-on skills, and encourages critical reflection is effective in leading participants to become global systems thinkers. Students gain important skills in looking at problems from a wide range of perspectives to consider the societal impact of potential solutions while also being conversant in technical engineering to ensure the viability of a concept. In this paper we present the general pedagogical approach and provide some examples of the effect the program is having on students.


Author(s):  
Charles W. Allen

With respect to structural consequences within a material, energetic electrons, above a threshold value of energy characteristic of a particular material, produce vacancy-interstial pairs (Frenkel pairs) by displacement of individual atoms, as illustrated for several materials in Table 1. Ion projectiles produce cascades of Frenkel pairs. Such displacement cascades result from high energy primary knock-on atoms which produce many secondary defects. These defects rearrange to form a variety of defect complexes on the time scale of tens of picoseconds following the primary displacement. A convenient measure of the extent of irradiation damage, both for electrons and ions, is the number of displacements per atom (dpa). 1 dpa means, on average, each atom in the irradiated region of material has been displaced once from its original lattice position. Displacement rate (dpa/s) is proportional to particle flux (cm-2s-1), the proportionality factor being the “displacement cross-section” σD (cm2). The cross-section σD depends mainly on the masses of target and projectile and on the kinetic energy of the projectile particle.


2012 ◽  
Author(s):  
Kimberly A. Schreck ◽  
Melissa Russell ◽  
Luis Vargas ◽  
Tanya Brucie ◽  
Jennifer Hall

1973 ◽  
Vol 30 (01) ◽  
pp. 036-046 ◽  
Author(s):  
D.C Banks ◽  
J.R.A Mitchell

SummaryWhen heparinised blood is rotated in a glass flask at 37°C. the white cell count falls and it has been shown that this is due to the adherence and aggregation of polymorphonuclear white cells on the wall of the flask. The masses formed bear a close structural resemblance to thrombi and the mechanisms involved in white cell loss during rotation may therefore increase our knowledge of the thrombotic process.


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