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Structure integral products

The architect continues to look for products that can he multifunctional. As an example in roofing, the product could perform a part or all of the functions. The roof has to provide structural integrity, temperature and sound insulation, vapor and moisture control, weather resistance, elastic qualities for change in weather, fire protection, aesthetic appeal, and so on. [Pg.246]

The first DNA preparations in this part of the study was PCR product - DNA of Chlamydia trachomatis 17 > bp), in the presence of a smaller by molecular mass internal control of human DNA. After migration the gel was exposured for 5, 30, 300 and 600 seconds by transilluminator Vilber Lourmat, equipped with 6 UV lamps with irradiance W = 0,24 W/m2 and 254 nm filter. The degree of structural integrity loss of amplificated DNA was evaluated by the decrease of brightness intensity of the of the bands processed by using the tools of "ImageJ" computer program. [Pg.191]

Initial work on the design of structured products has been presented by, for example, Meeuse et al. 2000, Wibowo and Ng, 2001, 2002. In this chapter a real life example of a process redesign project where process synthesis techniques were applied to a structured food product, is presented. First, we position this work in the framework of integrated product and process design. Then we describe how we translated existing process synthesis techniques into a useful methodology for structured products. Then the actual case study is presented. Finally some perspectives are given. [Pg.168]

Whole proteins, including monoclonal antibodies, are the fastest-growing class of therapeutics. Compared with traditional small molecule drugs, much additional analysis is necessary for their development and production due to their large size and complex structure. The protein construct and its formulation have to be optimized during development, and its structural integrity must be closely monitored during production. [Pg.393]

The application of HRTEM and ED can be difficult, however, because of the tendency of the catalysts to become amorphous under the beam. Use of higher accelerating voltages (to minimize the production of inelastic collisions which are primarily responsible for the structural disintegration of the sample), better vacuum in the sample chamber and, when possible, dealumination of the aluminosilicate (by replacing AP+ with in the framework) without losing structural integrity avoids these problems. These studies have indicated that Al-O bonds are more susceptible to rupture under electron-beam irradiation than Si-O bonds. [Pg.147]

Limitations on the use of sulphur concrete are imposed by its high temperature and fire susceptibility. Although it will not sustain combustion, under applied flame the sulphur will burn to produce SO2. At temperatures above the melting point of sulphur, the product loses structural integrity. Thus sulphur concrete is best suited for outdoor and underground use as well as indoor construction applications where fire hazard is not a concern and building codes are not applied. [Pg.131]

Values could hot be calculated due to the product did not retain the structural integrity after rehydration. [Pg.66]

This cascade however may be propagated throughout the cell unless terminated by a protective mechanism (see below) or a chemical reaction such as disproportionation, which gives rise to a non-radical product. Polyunsaturated fatty acids, found particularly in membranes, are especially susceptible to free radical attack. The effects of lipid peroxidation are many and various. Clearly, the structural integrity of membrane lipids will be adversely affected. In the lipid radical produced, the sites of unsaturation may change, thereby altering the fluidity of the membrane (see chap. 3). Lipid radicals may interact with other lipids and... [Pg.212]


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See also in sourсe #XX -- [ Pg.161 ]




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