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Package generator

It is quite common for a Catalysis project leader to set up a structure of empty packages and use them to enter stub specifications, designs, and relations (such as refinements) between them that must be completed in downstream development. These packages also need an appropriate build mechanism that traverses and evaluates the contents of each package, generating results that will be checked, compiled, and linked. [Pg.548]

Energy input is required to extract the powder from its packaging, generate the fine particle cloud, and dilute it with air. Historically, this energy comes from the patient s inhalation effort (Table 2). In some cases, the energy for extracting/metering the powder comes from the mechanical manipulation of the device by... [Pg.2085]

A complex heterogeneous reacting system can be thus described by a set of n (1+ns) differential equations (equations (1) and (2)) and n +n algebraic equations (equations (3) and (4)). It is not necessary to the user to write down the differential-algebraic equations because the package generates the corresponding system on the basis of a detailed description of the reaction mechanism and the kinetic assumptions. [Pg.573]

Wavelet-based software packages generate the sub-bands in the form of a grouped display of the smoothed and detailed sub-bands. For example, the grouped display of the sub-bands in a single decomposition step as generated by S + WAVELETS is shown in Fig. 4. Consistent with the notation used in this book, the cl and dl labels represent the smoothed and detailed coefficients, respectively, so that cl-cl corresponds to the smoothed (Il,l) wavelet coefficients, whereas cl-dl , dl-cl and dl-dl correspond to the detailed wavelet coefficients (Il.h, Ih.l and Ih.h sub-bands, respectively). NB In some wavelet software packages (e.g. S -l- WAVELETS ), the... [Pg.466]

Software translation package generates solder-pad centroid information. [Pg.1314]

Software translation package generates part centroid information. [Pg.1314]

The third section devotes itself to an in-depth examination of the structural bonded joint the substrates, primers and the structural adhesives themselves. In this last area, a full appraisal is made of a typical range of commercially available structural adhesives. This examines their role in the bonded structure, the formats in which they are supplied, the basic chemistries employed with their relative cure cycles and generic formulations. This is augmented with key properties of selected adhesives from this range and a typical qualification package generated for one adhesive to meet typical aerospace specifications. The section concludes with brief outlines as to how the adhesives are made, how they are applied to the substrates to be bonded and file methods by which they can be cnred. [Pg.216]

Packaging generated 76 millions tons of waste in 2005 which can be divided into 14% glass, 3% steel, 2.5% aluminum, 51% paper and paperboard, 18% plastic, 11% wood and 0.5% miscellaneous. From those materials varying proportions, 25% of glass, 63.5% of steel, 36% aluminum, 58% of paper and paperboard, 10% of plastic, and 15 % of wood, were recovered by recycling, incineration, and/or composting [1]. [Pg.2451]

The chirality code of a molecule is based on atomic properties and on the 3D structure. Examples of atomic properties arc partial atomic charges and polarizabilities, which are easily accessible by fast empirical methods contained in the PETRA package. Other atomic properties, calculated by other methods, can in principle be used. It is convenient, however, if the chosen atomic property discriminates as much as possible between non-equivalent atoms. 3D molecular structures are easily generated by the GORINA software package (see Section 2.13), but other sources of 3D structures can be used as well. [Pg.420]

Aerosol products are hermetically sealed, ensuring that the contents caimot leak, spill, or be contaminated. The packages can be considered to be tamper-proof. They deUver the product in an efficient manner generating Httie waste, often to sites of difficult access. By control of particle size, spray pattern, and volume deUvered per second, the product can be appHed directiy without contact by the user. For example, use of aerosol pesticides can minimize user exposure and aerosol first-aid products can soothe without applying painful pressure to a wound. Spray contact lens solutions can be appHed directiy and aerosol lubricants (qv) can be used on machinery in operation. Some preparations, such as stable foams, can only be packaged as aerosols. [Pg.344]


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See also in sourсe #XX -- [ Pg.254 ]




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