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Retrieved instrument

FIGURE 8 The retrieved instrument method showing the exact conditions used to acquire the raw data.The first screen shows the pumping conditions while the second screen shows the detector conditions. [Pg.596]

As drilling technology moved the pursuit of hydrocarbon resources into higher-cost offshore and hostile environments, intentionally deviated boreholes required information such as azimuth and inclination that could not be derived by surface instruments. Survey instruments, either lowered on a sand line or dropped into the drill pipe for later retrieval, to some degree satisfied the requirements but consumed expensive rig time and sometimes produced questionable results. [Pg.901]

One of the more recent developments in potential measurement instruments has been their incorporation into what is best drescribed as data management devices . These units will not only display a potential reading but may be instructed to store this information for later retrieval and processing. The complete unit incorporates a high-impedance voltmeter with an integral microprocessor for data and code entries into a solid-state... [Pg.257]

It should be capable of monitoring and controlling as wide a range of process devices as possible, including intelligent instruments and sensors, and should be able to log and retrieve large amounts of process data. [Pg.472]

It can be readily anticipated that the new instrumentation, having extended the point resolution of the microscope up to its information limit [117], will provide even better high resolution images of nanoclusters, and also that it will not supersede, but emphasize, the role of EH, as the relevant structural information encoded in the phase (which is still completely lost in the recording process) can be retrieved corrected by all coherent aberrations. [Pg.145]

After a simple Fourier inversion of a set of magnetic structure factors MbU, one can retrieve the magnetisation density. A much better result, e.g. the most probable density map, can be obtained using the Maximum Entropy (MaxEnt) method. It takes into account the lack and the uncertainty of the information not all the Bragg reflections are accessible on the instrument, and all the values contained in the error bars are satisfactory and have to be considered. However, as this method extracts all the information contained in the data, it is important to keep in mind that it may show spurious small details associated to a low accuracy and/or a specific lack of information located in (/-space. [Pg.236]

This expanded view of task automation includes new capabilities in the the traditional area of instrument automation and in the somewhat newer related field of robotics. In addition it includes a number of functions which are not new to the office and business environment but have only recently become readily available in the laboratory. These are tools such as data base management, scientific text processing, and electronic mail and document transfer. One way to improve technical productivity Is by giving the scientist more time to do science. This can be accomplished through improved efficiency In the office, communication, and information retrieval functions which must be performed as well as by allowing science to be done In new and more efficient ways through the use of computers. [Pg.2]

The provision of these office automation tools to the scientist must be done in a way which integrates the office activities with the lab activities. Global planning must be done for the implementation of a comprehensive system which includes laboratory Instruments, robotics, office automation, graphics, molecular, reaction and other modeling tools, information retrieval and all the other computer resources required by the modern scientist. [Pg.4]

A computer-controlled rheology laboratory has been constructed to study and optimize fluids used in hydraulic fracturing applications. Instruments consist of both pressurized capillary viscometers and concentric cylinder rotational viscometers. Computer control, data acquisition and analysis are accomplished by two Hewlett Packard 1000 computers. Custom software provides menu-driven programs for Instrument control, data retrieval and data analysis. [Pg.105]

In this experiment, a Tubing Shear History Simulator was coupled with a Reciprocating Capillary Viscometer to simulate the above conditions. Results from the experiment are given in Tables I and II and Figure 3, and were retrieved directly from the project data base. Total Instrument use time for this experiment was 17 hr, of which 16.5 hr were completely unattended operation.. Data analysis, including plotting of figures, required less than five minutes. [Pg.111]

The screening capillary viscometer can be operated manually as well as automatically. If manual operation is desired, an interactive program is available to aid with data collection. Program-operator interaction takes place through terminal input and also with a push-button data collection indicator on the instrument itself. The immediate on-line analysis of results and the ease of data storage and retrieval are just some of the benefits realized by using this program 1n conjunction with manual operation of the instrument. [Pg.119]

The management of an analytical chemistry laboratory involves a number of different but related operations. Analysts will be concerned with the development and routine application of analytical methods under optimum conditions. Instruments have to be set up to operate efficiently, reproducibly and reliably, sometimes over long periods and for a variety of analyses. Results will need to be recorded and presented so that the maximum information may be extracted from them. Repetitive analysis under identical conditions is often required, for instance, in quality assurance programmes. Hence a large number of results will need to be collated and interpreted so that conclusions may be drawn from their overall pattern. The progress of samples through a laboratory needs to be logged and results presented, stored, transmitted and retrieved in an ordered manner. Computers and microprocessors can contribute to these operations in a variety of ways. [Pg.524]

The LIMS computer is located on the site, and several terminals may be provided for entry of data from notebooks and instrument readouts and for the retrieval of information. Bar coding for sample tracking and access codes for laboratory personnel are part of the system. Instruments may be interfaced directly with the LIMS computer to allow direct data entry without help from the analyst. The LIMS may also incorporate statistical methods and procedures, including statistical control and control chart maintenance. See Workplace Scene 6.4. [Pg.167]

Figure 7 shows the relationship between a raw data channel and its associated metadata. If we were to choose the item highlighted Instrument Method , the embedded relational database would retrieve the exact version of the instrument method that was used to acquire the raw data. All this occurs in a fraction of a second. Imagine how long it would take using a conventional flat-file system (see Figure 8). [Pg.594]

The basic equipment in the ADME/Tox laboratory revolves around three major core technologies (i) liquid handling (ii) detection and analysis instrumentation and (iii) sofiware for data retrieval, analysis, interpretation and quality control. [Pg.19]

Data archive and retrieval Data that are no longer required in the day-to-day operation of the instrument are archived in a retrievable manner. [Pg.803]

The data obtained by MS is analyzed automatically by a data analyzer and retrieved for interpretation either manually or with the aid of a computerized system. MS instruments for proteomics should possess the following characteristics... [Pg.107]

A pioneer in rocket and satellite technology, Singer devised the basic instrument for measuring stratospheric ozone, was the principal investigator on a satellite experiment retrieved by the space shuttle in 1990, and was the first scientist to predict that population growth would increase atmospheric methane—an important greenhouse gas. [Pg.13]


See other pages where Retrieved instrument is mentioned: [Pg.1037]    [Pg.241]    [Pg.52]    [Pg.4]    [Pg.33]    [Pg.93]    [Pg.1027]    [Pg.4]    [Pg.116]    [Pg.116]    [Pg.130]    [Pg.68]    [Pg.142]    [Pg.122]    [Pg.497]    [Pg.26]    [Pg.9]    [Pg.301]    [Pg.325]    [Pg.40]    [Pg.250]    [Pg.3]    [Pg.163]    [Pg.194]    [Pg.273]    [Pg.273]    [Pg.116]   


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Retrieval

Retrieved instrument method

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