3,973 research outputs found

    Steve Ellis & The Road Ridin' Daddys

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    Photograph of a the side view of a white station wagon parked in a lot in front of a pinkish building with white painted metal window bars and balcony. The car has red lettering on it that reads: "Steve Ellis & The Road Ridin' Daddys". Handwritten caption by J.B. Jackson reads: "Road Culture" and "JBJ"

    Marriage record of Lockyer, Fred T. and Ellis, Minnie

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    Marriage license for Fred T. Lockyer and Minnie Ellis. J.B. Adkins was the officiant

    Guy, Wylie and Alton Reeves and J.B. Crawford Working a Mule Team on a Farm

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    Guy, Wylie and Alton Reeves and J.B. Crawford working a mule team on a far

    Page 31

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    Images and descriptions of Arkansas College students Louise Mayo Ellis, J.B. Woods, and Amelia Samano Bishop

    Commercial Signs, Ellis Motors

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    A photograph of a group of horses surrounding a sign advertising 'Ellis Motors' amid a snowy mountain landscape in rural America

    Alive and Kicking! J.B. Priestley and the University of Bradford

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    YesThis article explores the connections between Bradford-born author J.B. Priestley and the University of Bradford, using evidence from archives held in Special Collections at the University. The discussion includes the award of an honorary doctorate to Priestley in 1970 and the opening of the J.B. Priestley Library in 1975

    Expansion of human bone marrow stromal cells on poly-(DL-lactide-co-glycolide) (PDL LGA) hollow fibres designed for use in skeletal tissue engineering

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    Strategies to expand human bone marrow stromal cells (HBMSC) for bone tissue engineering are a key to revolutionising the processes involved in three-dimensional skeletal tissue reconstruction. To facilitate this process we believe the use of biodegradable porous poly(DL-lactide-co-glycolide) (PDL LGA) hollow fibres as a scaffold used in combination with HBMSC to initiate natural bone repair and regeneration offers a potential solution. In this study, the biocompatibility of 75:25 PDL LGA fibres with HBMSC and the capacity of a PDL LGA fibre-associated HBMSC-monolayer to establish an osteogenic phenotype in vivo was examined. A high proportion of HBMSC survived when expanded on PDL LGA fibres for 6 days, with only 10% of the propidium iodide (pI)-labelled population represented in the sub-G1 DNA peak on analysis by flow cytometry. Tracking carboxy-fluorescein diacetate, succinimidyl ester (CFSE)-labelled HBMSC by flow cytometry indicated that HBMSC attachment to the P(DL)LGA fibres does not interfere with their rate of proliferation. Furthermore, in response to osteogenic stimuli, HBMSC expanded on PDL LGA fibres can differentiate, as expected, along the osteogenic lineage with associated alkaline phosphatase activity. Following implantation into SCID mice, osteogenic-conditioned PDL LGA fibre-HBMSC graft resulted in type I collagen deposition and associated bone mineralisation and osteoid formation, as evidenced by immunohistochemistry and histology. These studies provide evidence that porous PDL LGA hollow fibre-HBMSC graft is an innovative biomaterial that offers new approaches to mesenchymal cell expansion, which could be utilised as a scaffold for skeletal tissue generation

    Good Words (Magazine) for 1868

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    As Abbey writes, the fable articles here precede and are different from their first appearance in book form a year later. For it was then that Ralston published the first edition of Krilof and His Fables. See my comments on the third (1871) and fourth (1883) editions. The book smells of its many years! The three fable articles are on 39-46, including six illustrations on 40-41; 215-221, including six illustrations on 216-17; and 413-20, including six illustrations on 416-17. These are magazine articles. They comment on Krilof's views and particularly on Russian foibles. Thus one prose text after another is integrated into the article. In the book, there will be, after a preface and a memoir, a simple collection of texts. In fact, the selection of Krilof fables within the article here is excellent, and the author puts them into a good cultural and political context. At least some of the illustrations are the same as those in the third edition.. The texts are close to those found in the published books. It makes sense to see the texts in the magazine here as forerunners of those fable texts there. I presume that Ralston had opportunity to edit and amend between his magazine articles and his book's first edition. The publisher of the magazine is of course the publisher of the third edition that I have. The print is minuscule! I needed a magnifying glass for normal reading. The index just after 774 assigns J.B. Zwecker and A.B. Houghton as illustrators for the eighteen illustrations in the three fable articles. Dalziel, Houghton, and Zwecker are the names I can make out on the illustrations. Dalziel is not mentioned on the title page, but there is reference to others.This is a hardbound book (hard cover)Norman MacLeod; W.R.S. Ralston for fable

    "J.B. Stoner", August 15, 1972

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    Public address written by John R. Lewis urging people to renounce the racially-repugnant sentiments of Georgia politician J.B. Stoner and register to vote in order to protect their interests, written August 15, 1972. 3 pages

    Can Reynolds stress transport models be used for large eddy simulation?

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    This work explores a route to unify Reynolds averaged (RANS) and large eddy simulation (LES). The approach is to use a slightly modified Reynolds stress transport model for any mesh resolution. The model is formulated in terms of both total kinetic energy and modeled kinetic energy in such a way that the RST model correctly reproduces RANS results, LES results, and even DNS results (by turning itself off). The model equations do not contain functions of the mesh size within any of the model terms or constants. It is demonstrated that this approach works at any mesh resolution. In addition, the model naturally transitions between mesh resolutions, either coarse to fine or vice-versa. It is shown that for LES mesh resolutions the model returns a turbulent length scale that is proportional to the mesh size (the classic LES turbulent length scale)
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