953 resultados para Family Stress


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Kids from left to right: Hans Ludwig, Elizabeth, Kurt Gottschalk

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Left to right: Therese Godshaw (Gottschalk) nee Molling, Walter, Freddy, Grandmother Henriette Gottschalk nee Rothschild, Ursula, Hal and Kurt

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Front row left to right: Tikkun, Back row: the twins, age 8, Shimon's wife Jo,, right: Ariela, age 28, the eldest

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The family was in Hannover, Germany, for the dedication of the memorial to the Holocaust, the Mahnmal am Opernplatz; from left to right: Anne Godshaw nee Pick, Donald Godshaw, Molly Godshaw nee Peck, Freddy Godshaw, Jan Godshaw nee McKay, and Hal (Hans Ludwig Gottschalk) Godshaw.

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From left to right: Kurt, Therese nee Molling, Ursula, the maid, Elizabeth and Hal,

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This family grave is next to the tombstone of Adolf Molling and his wife Henriette (Henny) nee Meyerhof

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The fatigue and fracture performance of a cracked plate can be substantially improved by providing patches as reinforcements. The effectiveness of the patches is related to the reduction they cause in the stress intensity factor (SIF) of the crack. So, for reliable design, one needs an accurate evaluation of the SIF in terms of the crack, patch and adhesive parameters. In this investigation, a centrally cracked large plate with a pair of symmetric bonded narrow patches, oriented normally to the crack line, is analysed by a continuum approach. The narrow patches are treated as transversely flexible line members. The formulation leads to an integral equation which is solved numerically using point collocation. The convergence is rapid. It is found that substantial reductions in SIF are possible with practicable patch dimensions and locations. The patch is more effective when placed on the crack than ahead of the crack. The present analysis indicates that a little distance inwards of the crack tip, not the crack tip itself, is the ideal location, for the patch.

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The structural integrity of any member subjected to a load gets impaired due to the presence of cracks or crack-like defects. The notch severity is one of the several parameters that promotes the brittle fracture. The most severe one is an ideal crack with infinitesimal width and infinitesimal or zero root radius. Though analytical investigations can handle an ideal crack, experimental work, either to validate the analytical conclusions or to impose the bounds, needs to be carried out on models or specimens containing the cracks which are far from the ideal ones. Thus instead of an ideal crack with infinitesimal width the actual model will have a slot or a slit of finite width and instead of a crack ending in zero root radius, the model contains a slot having a finite root radius. Another factor of great significance at the root is the notch angle along which the transition from the slot to the root takes place. This paper is concerned with the photoelastic determination of the notch stress intensity factor in the case of a “crack” subjected to Mode 1 deformation.