998 resultados para Colby dorms


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Blair Offers Seven Lessons to Grads Writing for Everyone On the Job Front Brown's Organization SPARKs Change Seven Students Receive 2012 Fulbright Grants Faculty Awarded Named Professorships Focus on Humanities Bold Reflections TwitterFEED Two Hundred and Counting

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Once a homeless teen, Jessica Boyle ’12 worked to make Colby a place where students like her can thrive.

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Modeling Clean Energy A New Home Sweet Home Opening a Dialogue Walking in Someone Else's Shoes Delayed Reaction, Strong Occupation New Affiliation with Columbia Same Place, Different Mission Giving Marriage a New Ring TwitterFEED Microcosm of a Small World

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Tony Blair to Speak at Commencement Science Building Gets Go-Ahead Spike Lee Does the Colby Thing Historian Leonard Awarded Lincoln Prize Presidential Preview Show by Mike Daisey Creates Nationwide Controversy President Adams as Art Curator Chen Wins Peace Grant--Again Qin Awarded Watson Fellowship Roots in Slavery Tell Bigger Story TwitterFEED A (Real) Virtual Community Corrado Tapped as Expert on Super PACs

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A Touch of Glass Witness to History Colby Renews "No-Loan" Commitment Fresh Idea The Anthropology of Air Travel Oak Fellow Fights India's Caste System If the Ring Fits… TwitterFEED New Maisel Fund Opens Doors to the World Goodbye, Oil (Almost)

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Passion Defines Grads Colby Dumps Bottled Water Bullish on Colby: 2011 Graduates Find Success in Tight Market Four Fulbright Fellows; Projects for Peace Winners Hanson Scholar Feels an Affinity Philosophy Prof's Advice: "Plastikos" TwitterFEED Update: Nick Tucker '11J Student Entrepreneurs Win Start-Up Cash Schwalm '99 Shoots NFL Photo of the Year Rising Senior Wins Jeapardy! Admitting the Illustrious Class of 2015

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Over a quarter century of hard work, retiring Dean of Admissions Parker Beverage had a hand in Colby’s steady rise.

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Mode of access: Internet.

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(scanned along crop marks on original, see hs14243)

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Rapid granular flows are defined as flows in which the time scales for the particle interactions are small compared to the inverse of the strain rate, so that the particle interactions can be treated as instantaneous collisions. We first show, using Discrete Element simulations, that even very dense flows of sand or glass beads with volume fraction between 0.5 and 0.6 are rapid granular flows. Since collisions are instantaneous, a kinetic theory approach for the constitutive relations is most appropriate, and we present kinetic theory results for different microscopic models for particle interaction. The significant difference between granular flows and normal fluids is that energy is not conserved in a granular flow. The differences in the hydrodynamic modes caused by the non-conserved nature of energy are discussed. Going beyond the Boltzmann equation, the effect of correlations is studied using the ring kinetic approximation, and it is shown that the divergences in the viscometric coefficients, which are present for elastic fluids, are not present for granular flows because energy is not conserved. The hydrodynamic model is applied to the flow down an inclined plane. Since energy is not a conserved variable, the hydrodynamic fields in the bulk of a granular flow are obtained from the mass and momentum conservation equations alone. Energy becomes a relevant variable only in thin 'boundary layers' at the boundaries of the flow where there is a balance between the rates of conduction and dissipation. We show that such a hydrodynamic model can predict the salient features of a chute flow, including the flow initiation when the angle of inclination is increased above the 'friction angle', the striking lack of observable variation of the volume fraction with height, the observation of a steady flow only for certain restitution coefficients, and the density variations in the boundary layers.

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The mechanisms and kinetics of axial Ge-Si nanowire heteroepitaxial growth based on the tailoring of the Au catalyst composition via Ga alloying are studied by environmental transmission electron microscopy combined with systematic ex situ CVD calibrations. The morphology of the Ge-Si heterojunction, in particular, the extent of a local, asymmetric increase in nanowire diameter, is found to depend on the Ga composition of the catalyst, on the TMGa precursor exposure temperature, and on the presence of dopants. To rationalize the findings, a general nucleation-based model for nanowire heteroepitaxy is established which is anticipated to be relevant to a wide range of material systems and device-enabling heterostructures.