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Development Outputs

Software verification consists of tasks performed to evaluate if the software is performing desired tasks and providing desirable results. Software verification is part of software validation. Software testing is one of the many verification activities intended to confirm that software development output meets its input requirements. Other verification activities include various static and dynamic analyses, code and document inspections, walkthroughs, and other techniques [14]. [Pg.833]

Verification is performed to ensure that the design and development outputs have satisfied the design and development input requirements. Records of the results of the verihcation and any necessary actions that are to be taken (see 4.2.4). [Pg.89]

As is the case with valinomycin and even more sophisticated interaction patterns of large biomesogen organizations, energetic patterns are rather well accounted for by our computer calculated possibilities and increasingly well visualized by developing output facilities. The dynamic programs imprinted into their molecular interaction patterns and dynamic interplays, however, remain less obvious, both in interpretation and visualization. [Pg.435]

In 1974 electrodeless lamps powered by microwaves were developed. Output was 36% UV and bulb life was considerably longer. Spectral output was more flexible due to different bulb compositions. Power was up to 300 watt/inch. Although pulsed xenon lamps offer another alternative, MPM lamps and electrodeless units account for most of the UV curing done today [21]. [Pg.335]

This means that for example if the system architecture is verified including the allocated requirements and later in a further verification the system design is verified based on the previous requirements and architecture, an iteration cycle becomes transparent. This means, we prove the input of aU activities against the developed output of the previous activities. The verification however, occurs parallel, so that requirements, architecmre and design are continuously tested against the output of requirements, architecture and design of the previous phase. Therefore, each process error has to be revealed in the verification through the comparison of the output presented to the respective input. A basic requirement, not only for safety... [Pg.258]

The equation system of eq.(6) can be used to find the input signal (for example a crack) corresponding to a measured output and a known impulse response of a system as well. This way gives a possibility to solve different inverse problems of the non-destructive eddy-current testing. Further developments will be shown the solving of eq.(6) by special numerical operations, like Gauss-Seidel-Method [4]. [Pg.367]

The architecture of a backpropagation neuronal network is comparatively simple. The network consists of different neurone layers. The layer connected to the network input is called input layer while the layer at the network output is called the output layer. The different layers between input and output are named hidden layers. The number of neurones in the layers is determined by the developer of the network. Networks used for classification have commonly as much input neurones as there are features and as much output neurones as there are classes to be separated. [Pg.464]

Due to the pulsed radiation output of the LINAC the detectors and the detector electronics have to handle very high counting rates in very short periods. Therefore the detectors have to work in a mode, where the detector output is integrated for one or several beam pulses. For that purpose the crystals are coupled to photo- diodes. Their currents are read out and analysed by the electronic board, which has been developed for this special application. [Pg.585]

There have been plenty of other examples of similar developments in the area of molecular structure input/output, especially during the third quarter of the 20th... [Pg.44]

A SMILES code [22], MDL Molfile [50], or JME s own compact format (one-line representation of a molecule or reaction including the 2D coordinates) of created molecules may be generated. The created SMILES is independent of the way the molecule was drawn (unique SMILES see Section 2.3.3). Extensions to JME developed in cooperation with H. Rzepa and P. Murray-Rust also allow output of molecules in the CML format [60]. [Pg.144]

To circumvent this need for calibration as well as to better understand the separation process itself, considerable effort has been directed toward developing the theoretical basis for the separation of molecules in terms of their size. Although partially successful, there are enough complications in the theoretical approach that calibration is still the safest procedure. If a calibration plot such as Fig. 9.14 is available and a detector output indicates a polymer emerging from the column at a particular value of Vj, then the molecular weight of that polymer is readily determined from the calibration, as indicated in Fig. 9.14. [Pg.644]


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