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Tool Bar

The Tool Bar (Fig. 39) provides quick access to some common tasks in building the project. [Pg.147]

The buttons left to right perform the following functions  [Pg.147]

T able 1. Functionality of the Main Menn in Molecular Sophe [Pg.148]

Main menu item Submenu item Explanation [Pg.148]

File XeprView Start Bruker s XeprView Software [Pg.148]


Starting the program opens a large SpartanBuild window (blank initially) a model kit and a tool bar Models are as sembled in the window Restart SpartanBuild to continue... [Pg.1258]

Three types of geometry measurements can be made using SpartanBuild distances between pairs of atoms angles involving any three atoms and dihedral angles mvolv mg any four atoms These are accessible from the Geometry menu and from the tool bar Try these operations now... [Pg.1260]

Highlight the standard curve data (A1 to B4 in the example). Click insert (top tool bar), then chart. Then click XY (scatter). Click next twice. [Pg.174]

Type in a chart title and labels for the x- and y-axes. Click finish. With either the graph or the entire graph box highlighted, click chart (upper tool bar), then add trendline, then OK. ... [Pg.175]

On the tool bar at the top of the page, select view. On the pop-up menu, select slide show. Press enter to scroll through your slides. [Pg.413]

The wafer is scribed and sliced into row bars as shown in Figure 20.6. The row bars are bonded to tooling bars that hold them during mechanical processing. [Pg.339]

The database file as a table object can be opened from the activated Table tab for manipulation. For examples, fields (columns) can be added from the Datasheet view by clicking the right edge of the existing column and then selecting Column from Insert menu. This brings a new column (labeled Field 1) or columns (repeated selection of Column option). Double click the new column to enter the field name. Records (rows) can be added also from the Datasheet view after clicking New record button on the tool bar. [Pg.29]

Click New object button on the tool bar and select AutoForm. [Pg.30]

Spartan Build also provides a second method for measuring model geotn etry. Clicking on the appropriate tool bar button performs the same function as items located on the Geometry menu (see tabled. ... [Pg.1294]

FIG. 4.8. A diamond-tipped tool, used to cut glass tubing held in tlie latlie chuck. Tlie lathe chuck is turned by hand some care is desirable to avoid pressing too hard on tlie tool bar and to avoid extending tlie scratch beyond one complete turn. [Pg.22]

A tool-bar is a worthwhile accessory. It is fitted to the back of the lathe and can be used to mount a carbon paddle, or a diamond-tipped glass-tube cutter. The tools are manipulated by a lever attached to the tool bar. [Pg.81]

A small, hot, pointed flame from the handlamp is now directed precisely on the rotating scratch and heating continued till the flame begins to show a yellowish colour. The flame is immediately removed and a wet cloth applied to the heated scratch line. The tube will crack cleanly round the line. Some practice will be required to make a straight mark. The author uses a diamond point mounted on a rod attached to the tool bar, as shown in Fig 4.8 (p. 36). The heat mugj... [Pg.81]

To get the lowest energy geometry for your DNA molecule, you need to run a geometry optimization calculation. Select Calculations. .. under Setup in the top tool bar. [Pg.152]

Depending on the speed of your computer, this calculation may take a while. To watch the progress of the calculation, select Monitor under Options on the far right side of the tool bar. If you double click on the job you submitted, you can see the calculation output. Notice how with each cycle of the calculations the energy of the structure decreases. [Pg.152]

Learn the Skill To start your word processing program, a blank document, sometimes called Document 1, appears on the screen. To begin, start typing. To create a new document, click the New button on the standard tool bar. These tips will help you format the document. [Pg.140]

Process integration in PRIME is based on the integration of the contextual description of the design process steps with descriptions of the tools responsible to perform these steps. A tool model is constructed in a tool modeling formalism describing its capabilities (i.e. services provided) and GUI elements (menu items, tool bars, pop-up menus etc.). Process and tool metamodels are integrated within the so-called environment metamodel (Fig. 3.3). The interpretation of environment models enables the tools to adapt their behavior to the applicable process definitions for the current process state. Thus, the user is able to better understand and control the process execution. [Pg.192]

You probably have used a spreadsheet program before and are familiar with the basic functions. But we will summarize here the most useful aspects for analytical chemistry applications. You should refer to the spreadsheet manual for more detailed information. Also, the Exel Help on the tool bar provides specific information. [Pg.78]

Excel has a large number of matheinatical and statistical functions that can be used for calculations in lieu of writing your own formulas. Let s try the statistical functions to automatically calculate the mean. Highlight an empty cell and click fx on the tool bar. The Paste Function window appears. Select Statistical in the Function category. The following window appears ... [Pg.81]

Highlight the location where you want the solution. Click on the button on the Standard Tool Bar. Follow the Excel instructions to enter the appropriate variables. [Pg.2338]

The diagram is easily generated in Aspen Plus by going to Tools on the upper tool bar and selecting Analysis, Property, and Binary. The window shown in Figure 1.3 opens on which the type of diagram and the pressure are specified. Then click the Go button. [Pg.4]

To start specifying chemical components, go to the tool bar at the top of the window and click the fourth item firom the left Data. Select the top item Setup. This opens the Data Brower window shown in Figure 3.14. This is the window that is used to look at all aspects of the simulation. It is used to define components, set physical properties, specify the parameters of the equipment (e.g., the number of stages in the column and the pressme), and specify properties of various streams (e.g., flow rate, composition, temperature, and pressure). [Pg.46]

Using the Plot Wizard makes generating plots of these profiles quite easy. Click on Plot at the top tool bar of the Aspen Plus simulation window. Then click Plot Wizard. This... [Pg.67]


See other pages where Tool Bar is mentioned: [Pg.259]    [Pg.222]    [Pg.97]    [Pg.365]    [Pg.165]    [Pg.204]    [Pg.304]    [Pg.1297]    [Pg.103]    [Pg.1299]    [Pg.1319]    [Pg.153]    [Pg.1299]    [Pg.2456]    [Pg.15]    [Pg.17]    [Pg.74]    [Pg.77]   


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