2,298 research outputs found

    Evaluation of the accessibility effects and proximity related externalities of commuter rail service

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    Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 1997.Includes bibliographical references (p. 254-275).by Robert James Armstrong, Jr.M.S

    North Okanagan Old Timers' Association meeting at Armstrong

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    Pictured -- William Watson, H.M. Walker, Joe Harwood, Robert Lambly, Mrs. W.J. Armstrong, Mr. and Mrs. T.N. Hayes, Mrs. L. Ehmeke, Mr. and Mrs. R. Crozier, Mr. and Mrs. Charles Hardy, Fred Barnes, C.B. Lefroy, Mr. and Mrs. W.T. Hayhurst, Mr. and Mrs. A.W. Hunter, Mrs. Charles Patten, Mrs. Jack Pringle, A.E. Hayhurst, Andrew Baird, Mr. and Mrs. Harry Worth, Mr. and Mrs. W. Lynes, Mr. and Mrs. T.D. Whitehouse, Mr. and Mrs. R.B. Main, A.E. Sage, A.J. Fifer, J.M. Wright, Hon. K.C. MacDonald, F.B. Cossitt, Tom Hughes, Mrs. E.A. Norman, Charles Mitchell, Ben Francis, Harry Harding and J.Z. Parks

    The English Scottish border ballads - a critical study.

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    Railway derailment near Armstrong

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    H.M. Walker is walking in front of the train

    Photograph of a bust of the author Tasma

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    Photograph of a bust of the author Tasma (Jessie Catherine Couvreur). Pencilled on verso of photo 'Tasma - enlargement of an original lent to H.M. Green? by Mrs Erdos, a neice of Tasma

    Senator Henry M. Jackson, Representative Catherine May, Commissioner E.L. Armstrong, former Senator C.C. Dill and Representative T.S. Foley getting ready to release the first bucket of concrete at the Third Powerplant concrete ceremony at Grand Coulee Dam in Washington, October 21, 1970

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    Note filed with photograph: Operating an air valve to release the first bucket of concrete for the Grand Coulee Third Powerplant, left to right are: Senator H.M. Jackson, Representative Catherine May, Commissioner E.L. Armstrong, former Senator C.C. Dill and Representative T.S. Fole

    Isogeometric analysis for multi-patch structured Kirchhoff–Love shells

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    We present an isogeometric method for Kirchhoff–Love shell analysis of shell structures with geometries composed of multiple patches and which possibly possess extraordinary vertices, i.e. vertices with a valency different to four. The proposed isogeometric shell discretisation is based on the one hand on the approximation of the mid-surface by a particular class of multi-patch surfaces, called analysis-suitable G1 (Collin et al., 2016), and on the other hand on the use of the globally C1-smooth isogeometric multi-patch spline space (Farahat et al., 2023). We use our developed technique within an isogeometric Kirchhoff–Love shell formulation (Kiendl et al., 2009) to study linear and non-linear shell problems on multi-patch structures. Thereby, the numerical results show the great potential of our method for efficient shell analysis of geometrically complex multi-patch structures which cannot be modelled without the use of extraordinary vertices.Funding Information: The authors wish to thank the anonymous reviewers for their comments that helped to improve the paper. A. Farahat and M. Kapl have been supported by the Austrian Science Fund (FWF) through the project P 33023-N. H.M. Verhelst is grateful for the funding from Delft University of Technology. J. Kiendl has received funding from the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation program (grant agreement No 864482). Additionally, the authors are grateful for the support from the developers of the Geometry + Simulation Modules, in particular from A. Mantzaflaris (Inria Sophia Antipolis-Méditerranée). Funding Information: The authors wish to thank the anonymous reviewers for their comments that helped to improve the paper. A. Farahat and M. Kapl have been supported by the Austrian Science Fund (FWF) through the project P 33023-N . H.M. Verhelst is grateful for the funding from Delft University of Technology . J. Kiendl has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program (grant agreement No 864482 ). Additionally, the authors are grateful for the support from the developers of the Geometry + Simulation Modules, in particular from A. Mantzaflaris (Inria Sophia Antipolis-Méditerranée).Numerical AnalysisShip Hydromechanics and Structure

    Samuel H.M. Byers; Poet; Author; Diplomat; Oskaloosa; Iowa; Mahaska County; Iowa

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    This is a photograph taken of Samuel H.M. Byers at the onset of the Civil War in 1861. Byers served in the Union Army during the Civil War and gained a great deal of inspiration for his poetic writing during the war. Byers's most famous work is a poem entitled "Sherman's March to the Sea" recapping events that took place during this famous piece of American history. Byers is also credited with writing the state song of Iowa, played to the melody of "O, Christmas Tree". After gaining fame and fortune from his writing, Byers pursued a career in diplomacy, serving in the U.S. Consulate in Switzerland and Italy. Byers then came back to the U.S., living out the remainder of his days in Los Angeles, California. Byers died in 1933, at the age 95

    L'Image Du Buddha Dans L'Art Lao

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    Text and photos of Buddha images in LaosL'Image Du Buddha Dans L'Art Lao. Vientiane: H.M. Demain, 197
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