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Equipped with the right applications, a computer can be of great help in virtually any domain of activity. When it comes to designing and precision, no other tool is as accurate as a computer. Moreover, specialized applications such as AutoCAD give you the possibility to design nearly anything ranging from art, to complex mechanical parts or even buildings.
Suitable for business environments and experienced users
After a decent amount of time spent installing the application on your system, you are ready to fire it up. Thanks to the office suite like interface, all of its features are cleverly organized in categories. At a first look, it looks easy enough to use, but the abundance of features it comes equipped with leaves room for second thoughts.
Create 2D and 3D objects
You can make use of basic geometrical shapes to define your objects, as well as draw custom ones. Needless to say that you can take advantage of a multitude of tools that aim to enhance precision. A grid can be enabled so that you can easily snap elements, as well as adding anchor points to fully customize shapes.
With a little imagination and patience on your behalf, nearly anything can be achieved. Available tools allow you to create 3D objects from scratch and have them fully enhanced with high-quality textures. A powerful navigation pane is put at your disposal so that you can carefully position the camera to get a clearer view of the area of interest.
Various export possibilities
Similar to a modern web browser, each project is displayed in its own tab. This comes in handy, especially for comparison views. Moreover, layouts and layers also play important roles, as it makes objects handling a little easier.
Sine the application is not the easiest to carry around, requiring a slightly sophisticated machine to properly run, there are several export options put at your disposal so that the projects itself can be moved around.
Aside from the application specific format, you can save as an image file of multiple types, PDF, FBX and a few more. Additionally, it can be sent via email, directly printed out on a sheet of paper, or even sent to a 3D printing service, if available.
To end with
All in all, AutoCAD remains one of the top applications used by professionals to achieve great precision with projects of nearly any type. It encourages usage with incredible offers for student licenses so you get acquainted with its abundance of features early on. A lot can be said about what it can and can't do, but the true surprise lies in discovering it step-by-step.







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The user interface (GUI) consists of a scrollable main window, a graphics area containing the drawing space, an area on the left where information is displayed (including all icons and hyperlinks, tools, objects, selections and parameters), a tool bar and a status bar at the bottom. The main window is used to display drawing objects and other editing tools. It includes a large text box in the center with the current selection (or active text), the current measurement (or active dimension) and the current coordinate system, all of which can be viewed at once. Tools are icons that can be clicked to activate them. They can be used to define geometry and create new objects.

The graphic area consists of two panes, the input pane on the left and the drawing area (also called the screen) on the right. The screen displays a representation of the drawing and any drawings being saved to disk. The input pane contains the canvas (the area where the drawing can be created or edited), the measurement tool, the dimension tool, the distance tool, the arrow tool, the offset tool, the text tool, the connect tool, the sub-division tool, the spline tool, the polyline tool, the text box tool, the polygon tool, the drafting view, the sheet view, the window selection tool and the front view. The left pane contains a live view of the currently active drawing objects, which can be selected by clicking the objects in the drawing area.

To view or update the drawing geometry, the user selects objects in the drawing area using the selection tool, or adds geometry in the canvas by clicking with the mouse. To move the drawing in the coordinate system, the user drags the canvas with the mouse, and to rotate the canvas, the user clicks and drags the canvas. To scale a drawing, the user drags the canvas using the mouse, and to resize objects, the user selects them and clicks and drags the mouse.

All the drawing and editing tools in AutoCAD are accessible from the Tool Box on the left, and can be saved as user settings for future use. The user can also open predefined commands from the Code Gallery (the Text and Form category) in the toolbox.

With AutoCAD there are several ways to open a drawing, depending on the edition type:

Open a drawing from a file or folder:

This option opens an existing drawing or folder containing multiple drawings.

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Uses in architecture
Architecture firms sometimes hire computer-aided drafting (CAD) technicians who create architectural drawings on AutoCAD. Some architects prefer to use AutoCAD, and architects who do not have computer-aided drafting skills can have their plans drawn on AutoCAD.

Architects use AutoCAD to create architectural drawings for construction projects. One of the main purposes of an architectural drawing is to provide information about a project’s size, materials, and location. Architects also use a 2D drawing program to plan out a building’s design by creating plans, sections, elevations, and other drawings. Using a combination of AutoCAD and hand-drawn elements, architects can create beautiful designs and graphics for their drawings. Architects use line, block, and other drawing tools to add contours, walls, and other design elements to a project’s drawings. An architect can insert text, shapes, images, and other objects into a drawing. When finished, a drawing can be exported to other applications for further design and analysis. For example, a construction project drawing can be sent to an architect’s office for approval.

AutoCAD can be used to create documents for the construction industry. For example, architects use AutoCAD to design the building’s façade, construction documents include floor plans, walls, columns, elevations, and other drawings. Construction companies use AutoCAD to create drawings that show the progress of a construction project. These drawings may include construction staging, site photos, and other drawings.

Drawings created with AutoCAD can be exported to PDF, DWF, DWFx, DXF, or PDF/A formats. These formats are compatible with different software and can be printed using a wide range of printers and software programs. The DXF format allows the drawing to be easily sent to a CNC (computer numerical control) machine, which cuts out the building’s parts.

Alternative CAD systems
Computer-aided design (CAD) systems that use a 2D coordinate system, such as Post-it Note, PowerPoint, Microsoft Word, Visio, and Keynote. A 2D coordinate system is useful for generating technical drawings.
3D-modeling systems that use a 3D coordinate system, such as SketchUp, Rhino, Blender, 3DS Max, Maya, and AutoDesk 3ds Max. A 3D coordinate system is used to represent a 3D object. 3D-modeling systems

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Model-based reconstruction of continuous-wave systems with general intensity response functions.
This paper describes a model-based reconstruction technique for single-shot continuous-wave (CW) systems. A data-driven approach is employed to represent the model intensity response functions as a continuous-wave Fourier transform (CWFT). Data from low-contrast CWFTs are iteratively reconstructed to yield a continuous-wave system, whose stability and noise behavior is well characterized. The proposed

What’s New In AutoCAD?

Edit Design Elements Online:

Edit any part of your drawing. Make changes to blocks, components, dimensions, annotations, text, and more. Export changes to files and import back into your drawing. (video: 5:02 min.)

Draw Smartline, Lines, B-Splines, and Multilines:

Import new Smartline, Lines, B-Splines, and Multilines models into your drawing with just one click.

Connect and animate:

Draw your parts or assemble assemblies in the field using MultiPart and MultiItem commands. Use MultiObject to draw multiple parts together. Inset, merge, and extrude objects. Update annotative and graphics objects.

Revolve and expand:

Create custom revolving and expanding parts. Add or edit Revolved and Expanded annotation objects. Use Distributed Revolve to draw revolving parts.

Object Browser:

Find, copy, and paste objects faster. Use the Object Browser to access tools, move selected objects, and display or hide object hierarchies. Create and customize your own navigation tools.

3D capabilities:

Add and edit 3D objects and components. Connect, joint, and snap objects in 3D. Set lighting, camera properties, and project properties.

PDF and HTML export and annotation creation:

Export your drawing to a PDF file. Easily edit and annotate your PDF using annotation tools. Export to HTML.

PDF Page and Page Flipping:

Enlarged pages in your PDF documents can be flipped for easy navigation.

Measurements and drawing grids:

Create custom grids, zones, zones with breaks, and templates for any grid type and measurement. Choose from hundreds of grids, shapes, and symbols.


Save time by creating project views from any new layer or any existing layer. Drag and drop to create views to suit your needs.

Graphic Styles:

Use graphic styles to simplify designing. Easily customize multiple symbols and families.

Inventor import:

Immerse yourself in the world of 3D design. View, import, and use 3D models in your drawings.

Efficient toolset

Draw a line with a single click:

Draw a line by selecting a point or by setting a custom start point. Draw a line segment or a polyline. Draw

System Requirements:

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• OS: Windows 7, 8, 10
• Processor: Intel Core i3, AMD Phenom II X4 955 or better
• Memory: 6 GB RAM
• Video Card: Nvidia Geforce GT440
• Graphics: 1024×768
• Sound: DirectX 9.0c compatible
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