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Analysis button

Once the real-time run was completed, the saved real-time assay file was opened as a relative quantification study. Data were displayed using the analysis button to obtain the cycle threshold C(T) values of the samples. Results from a real-time PCR run are typically represented in the form of C(T) values, which is the point at which the fluorescent intensity of the... [Pg.396]

Reopen Part Sequence window and via Open button select Body. Click OK. We now analyse each task. Double click on the Load task and fill in the details as per below. Select Manual. Click on Dept/Section button. In the Department window select pi. Under section select ml. Click on Cost Analysis button. [Pg.55]

The border of the Load task will now change to black indicating the task has been analysed for its micro requirements. Click the floppy symbol in the menu bar to save the analysis. Do this after every task analysis. Double click on the Mould task. Fill in the details as below. Click on the Equipment button and select Injection Moulder. Click on the Tool button and select Injection Mould. Leave Check Capacity. Fill in the remaining details. Click on Cost Analysis button. [Pg.56]

Another feature in Toray DS2 is the capability to access any water analysis residing in the designers DS2 database. This data can be accessed by clicking the Load/Review Analysis button. [Pg.276]

Obviously, the fit now is almost perfect with an adjusted equal to 0.9987. Let us have a look at further analysis regarding the general sigmoid model goodness. Click the Analysis button as shown in Fig. 5.15. Figure 5.29 shows the Analysis window showing the 95% confidence interval for the... [Pg.158]

If the query provides thousands of hits, the analyze features are particularly advantageous. One method is to analyze the results by any of the criteria that arc listed, c.g., by language (default), author names, journals, puhlication year, and so on. If one specification is selected and the choice is modified, the hit list will be updated. A more specific analysis is available with the Refine" option. where the user has the opportunity to choose one of eight criteria (including the search topics above) with further individual input. Several refinements of the hit list can reduce the result to a concise list of literature. To read the abstract of an article, the microscope button (to the right of the citation) has to be pressed (Figure 5-15). [Pg.245]

Like the refining of the PGMs, the analysis is compHcated by the chemical similarity of the metals. The techniques used depend on the elements present and their concentration in the sample. For some low grade samples, analysis is preceded by a concentration stage using fire assay with collection into a lead or nickel sulfide button. The individual metals can then be determined. [Pg.171]

Performs a batch solution of PSA functional equations, sequence equations and point estimates using the Big Red Button providing QA by recording analysis steps,... [Pg.145]

The character and the degree of automation in chemical control may have been covered in the above treatment of semi-automatic or completely automatic, and of discontinuous or continuous analysis, but something more should be said about the means by which automation proper has been performed in recent times. Whereas in the past automated analysis involved the use of merely, mechanical robots, to-day s automation is preferably based on computerization in a way which can best be explained with a few specific examples. Adjustment knobs have been increasingly replaced with push-buttons that activate an enclosed fully dedicated microcomputer or microprocessor in line with the measuring instrument the term microcomputer is applicable if, apart from the microprocessor as the central processing unit (CPU), it contains additional, albeit limited, memory (e.g., 4K), control logics and input and output lines, by means of which it can act as satellite of a larger computer system (e.g., in laboratory computerization) if not enclosed, the microcomputer is called on-line. [Pg.327]

The Metrohm E 636 Titroprocessor (Fig. 5.12) offers in principle the same possibilities as the Mettler MemoTitrators, but with some additional features concerning its operation, illustrated by the schematic diagram in Fig. 5.13, using the usual microprocessor terminology62 1, CPU 2, RAM 3, ROM 4, Bus 5, I/O interface 6,16-place alphanumeric display 7, numerical push-buttons 8, function and control buttons 9, card reader (for routine analysis) 10, alphanumeric thermoprinter for curves (normal and first derivative) and data on... [Pg.342]

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 bias point analysis is automatically run each time PSpice runs so we do not have to specify any settings. However, we will specify the simulation settings to only run a bias point calculation. Click the LEFT mouse button on the down triangle as shown to see die list of available simulations ... [Pg.158]

Select the Bias Point Analysis type and click the OK button ... [Pg.177]

Click the LEFT mouse button on the down triangle under Analysis type to obtain the list of available analyses ... [Pg.199]

We will now set up the DC Sweep to sweep the parameter value. Select PSpice and then New Simulation Profile. Choose a name for the profile and then click the Create button. Select the DC Sweep Analysis type and fill in the dialog box as shown ... [Pg.211]

The dialog box is set to sweep 1 5 from 1S volts to +15 volts in 0.01 volt steps. Click the OK button to return to the schematic. Run the analysis by selecting PSpice and then Run ... [Pg.215]

At low frequencies the capacitor is an open circuit and V0 should equal Vi. At high frequencies the capacitor becomes a short, and the gain goes toward zero. The 3 dB frequency of the circuit is to = 1/RC = 1,000 rad/s = 159 Hz. We will set up an AC Sweep to sweep the frequency from 1 Hz to 10 kHz. Select PSplce and then New Simulation Profile from the Capture menus and then enter a name for the profile and click the Create button. Select the AC Sweep/Nolse Analysis type and fill in the parameters as shown in the AC Sweep dialog box below ... [Pg.292]

Under Processing Options we see that the square next to Performance Analysis does not have a checkmark in it, indicating that it is not enabled. To enable the Performance Analysis click the LEFT mouse button on the text Performance Analysis. The square should fill with a checkmark 0, indicating that the Performance Analysis is enabled ... [Pg.312]


See other pages where Analysis button is mentioned: [Pg.199]    [Pg.141]    [Pg.174]    [Pg.988]    [Pg.199]    [Pg.141]    [Pg.174]    [Pg.988]    [Pg.588]    [Pg.161]    [Pg.354]    [Pg.774]    [Pg.295]    [Pg.180]    [Pg.102]    [Pg.80]    [Pg.334]    [Pg.335]    [Pg.89]    [Pg.125]    [Pg.108]    [Pg.109]    [Pg.174]    [Pg.374]    [Pg.247]    [Pg.288]   


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