Wednesday, 2 October 2013

AutoCAD Training Book | AutoCAD Training Center | Free AutoCAD Drawings | Free AutoCAD Blocks

Free download of useful AutoCAD blocks.
The AutoCAD tutorials section contains a range of tutorials from beginner to advanced and covering both 2D and 3D. The tutorials are divided into categories; The Basics, Beyond Basics, Techniques, Modeling and Rendering and Exercises. If you’re looking for something specific, try the relevant category.
AutoCAD is a computer aided drafting software package used by millions of professionals for 3D modeling, architectural design, engineering plans, and more. Learn how to use this software effectively and create drawings that you never knew you could.
AutoCAD Training Exercise 1:
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AutoCAD Training Exercise 2:
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AutoCAD Training Exercise 3:
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AutoCAD Training Exercise 4:
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AutoCAD Training Exercise 5:
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AutoCAD 2010 Free Tutorial Download | AutoCAD Drawings For Practice | AutoCAD Drawings Free Download

With literally  many students from all over the world successfully using the exercises given here.  You too can learn CAD on the Internet. It offers a self-directed, computer based training solution designed to allow students to quickly and easily master the most popular computer aided Design Software’s.
Step-by-step AutoCAD Training and Tutorials to help you master AutoCAD. We have 2D and 3D tutorials, all your AutoCAD needs are covered.
Free Exercises 1:
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Free Exercises 2:
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Free Exercises 3:
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Free Exercises 4:
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Free Exercises 5:
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AutoCAD Tutorial Download | AutoCAD Tutorial For Beginners | AutoCAD Tutorial In 2D And 3D

You can use this way. If you’re creating 2D drawings and 3D drawings. If you follow this way, you’re saving a lot of time.
The new way of creating CAD drawings is all about creating a 3D drawing first and then using that drawing to create your 2D drawing. In this course is explained how it is done. More. There is even explained how you can add dimensions to your 2D drawing.
Let’s make a good start. We start with creating a 3D drawing. It’s going to be a simple drawing. But that doesn’t matter.
CAD 3D drawing 1:
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CAD 3D drawing 2:01-autocad drawings-design-exercises
CAD 3D Drawing 3:02-autocad drawings-design-exercises

AutoCAD Free Style Released 2D Drawing and Sketching Made Easier | Free AutoCAD Drawings | AutoCAD Designing

AutoCAD Freestyle is built on the AutoCAD platform and is compatible with AutoCAD’s DWG file format. This means that in AutoCAD Freestyle you can open a file created in AutoCAD or AutoCAD LT add sketches, notes, and drawing enhancements and save completing workflow and round-trip with other DWG-based applications.
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But while AutoCAD requires quite a lot of training most anyone can get started using AutoCAD Freestyle right away thanks to its Integrated learning tools.
When a DWG file from another application is opened in AutoCAD Freestyle, the original objects cannot be edited. That is, all geometry and text are on a locked layer.
AutoCAD Freestyle only opens one paper space layout at a time. If a DWG file created in another application contains multiple paper space layouts, the user can select a single layout to use.
DWG files created in other applications that contain 3D views may be somewhat limited in their functionality when opened and viewed in AutoCAD Freestyle.
All text, geometry, and fill elements added to a file using AutoCAD Freestyle are automatically placed on new, AutoCAD Freestyle-specific layers.
If you are an AutoCAD (or other DWG-based software application) user, and you plan to send a DWG file to a user who is unfamiliar with DWG drawings, the best approach is to create a DWG file with a single viewport in a paper space layout.
There is no way to add new symbols (blocks) to the library within the application. But the ToolPalette file AcTpCatalogacadfs.atc can be manually edited to achieve this. Dynamic blocks are supported.
AutoCAD Freestyle saves to AutoCAD 2007 DWG file format but can open AutoCAD 2010 DWG file format files. It looks like this first release is based on AutoCAD 2010 as 18.0 is the interval version number and not 18.1 as in AutoCAD 2011.
AutoCAD freestyle Exercise 1:
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AutoCAD freestyle Exercise 2:
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AutoCAD freestyle Exercise 3:
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AutoCAD freestyle Exercise 4:
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AutoCAD freestyle Exercise 5
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Free 3D CAD Models | AutoCAD Exercise Drawings | AutoCAD 2012 Exercises

Introduction to AUTOCAD:
AutoCAD, created by Autodesk, is the most widely used technical drawing program wherewith over 1.25 million registered users. Autodesk is the fourth largest PC software company in the world. According to the Autodesk, and for Computer Aided Design (CAD), but can also stand for Computer Aided Drafting or Drawing.
The first version of AutoCAD came out in 1982 running under DOS. AutoCAD was the first significant CAD Program to run on a desktop computer. At the time most other technical drawing programs ran on high end workstations or even mainframes. AutoCAD success has been attributed to its famous open architecture. The support of Auto LISP a programming language designed especially for AutoCAD has also been a major factor in making AutoCAD the standard for serious technical drawing.
Although AutoCAD is primarily thought of as a CAD application used for 2D designs, it has a powerful 3D modelling engine that allows you to create 3D models of buildings or small parts used in a machine. 3D modelling in AutoCAD was introduced over a decade ago with AutoCAD R13 (and even before that as an add-on called Autodesk Modelling Extension for AutoCAD R12), but creating 3D models was very time consuming. In recent releases of AutoCAD, the 3D modelling features have been completely overhauled to allow conceptual designing in AutoCAD and to create high-quality presentation renderings with less effort.
AutoCAD not only gives you the 2D drafting tools that you’ve come to use everyday, but it also provides a robust set of tools for 3D modelling and visualizing the 3D models you can create.
Autodesk has created a program with unequalled features and capabilities, including 3D modelling and visualization access to external databases, intelligent dimensioning, importing and exporting of the file formats and many more.
Autodesk has developed a virtual corporation which includes programmers who create software designed to work with AutoCAD, dealers who provide technical support training and courses to over one million users each year.
Autodesk has expanded AutoCAD into a whole product line of programs with AutoCAD as a base and specialized, discipline-specific add-on built on top and included as one complete product.
The major disciplines that use AutoCAD are:
  • Architectural
  • Mechanical
  • GIS (Geographical Information Systems)
  • Facilities Management
  • Electrical / Electronic
  • Multimedia
These discipline specific flavour’s of AutoCAD include:
  • Autodesk Architectural Desktop and Autodesk Building Systems (mechanical, electrical, and plumbing),
  • Autodesk Mechanical Desktop,
  • Autodesk Map,
  • AutoCAD Land Desktop,
  • Autodesk Survey, and
  • Autodesk Civil Design.
Autodesk now offers Autodesk Revit and Autodesk Inventor, software applications that compete with Architectural Desktop and Mechanical Desktop, respectively. Revit and Inventor are not based on AutoCAD; they sacrifice AutoCAD compatibility in favour of a more fundamentally design- and 3D-oriented approach to CAD. Whether they ultimately will replace the traditional AutoCAD-based applications remains to be seen. Thus far, most companies seem to be sticking with AutoCAD and the AutoCAD-based Desktop applications.
However there are many other lesser known uses for AutoCAD, such as Pattern Making in the Garment Industry, Sign Making and so on.
 
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Artificial Leaf Solar Power | Artificial Leaf Produce Electricity

 

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Photosynthesis:
Photosynthesis is the process by which plants, some bacteria, and some protists use the energy from sunlight to produce sugar, which cellular respiration converts into ATP, the “fuel” used by all living things. The conversion of unusable sunlight energy into usable chemical energy, is associated with the actions of the green pigment chlorophyll.
They release molecular oxygen and remove CO2 (Carbon Dioxide) from the air.
ATP: Adenosine Tri-Phosphate (ATP)  Here the energy is stored in living systems; it consists of a Nucleotide (with Ribose sugar) with Three Phosphate groups.
Why is photosynthesis important:
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Nearly all living things depend on the energy produced from photosynthesis for their nourishment. Animals need the plants for food as well as oxygen. Only green plants are able to change light energy into chemical energy stored in food, thus they are vital to life on Earth.
Solar cells:
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Conventional solar cells are also called as Photo Voltaic Cells. These cells are made out of semiconducting material, usually silicon. When light hits the cells, they absorb energy though photons. This absorbed energy knocks out electrons in the silicon, allowing them to flow. By adding different impurities to the silicon such as phosphorus or boron, an electric field can be established. This electric field acts as a diode, because it only allows electrons to flow in one direction. Consequently, the end result is a current of electrons, better known to us as electricity.
Drawbacks of Solar cells:
They can only achieve efficiencies around 10% and they are expensive to manufacture. The first drawback, inefficiency, is almost unavoidable with silicon cells. This is because the incoming photons, or light, must have the right energy, called the band gap energy, to knock out an electron. If the photon has less energy than the band gap energy then it will pass through. If it has more energy than the band gap, then that extra energy will be wasted as heat.
Artificial Leaf:
Mixing of Photosynthesis + Conventional Solar Cells + Hydrogen Fuel Cell
26 Sept. 2011, Cambridge, MA - MIT professor Daniel Nocera has developed an artificial leaf chip that can split water molecules using light.

Photo by Dominick Reuter
This Leaf device combines a commercially available solar cell (Silicon) with a pair of inexpensive catalysts made of Cobalt and Nickel that split water into Oxygen and Hydrogen. The hydrogen can be stored and used as an energy source. (For example to power a fuel cell).
The collection and storage of the sun’s energy as hydrogen fuel is a key step in overcoming one of the limitations of solar power — it generates energy when the sun is shining, but it needs to be stored somewhere to be useful at night and in cloudy weather. Batteries are one place to store the energy, but it is limited. Storing solar energy as hydrogen fuel could be an answer for producing the electricity continuously.
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Using this approach, a solar panel roughly one square meter bathed in water could produce enough hydrogen to supply electricity for a house.

Aerogel | World’s Lightest Material | Aerogel Lighter Than Air | Aerogel Insulation

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Aerogel is a very special type of foam which is 99.8% air. Aerogel is a low-density solid-state material derived from gel in which the liquid component of the gel has been replaced with gas. The result is an extremely low density solid with several remarkable properties, most notably its effectiveness as a thermal insulator. Aerogels are solid, but can be less dense then air. Despite their sparse molecular structure aerogels are strong. image
It was first invented in the 1930s by Samuel Stephens Kistler, but was very brittle and could not be shaped. Aerogels are traditionally expensive and difficult to manufacture, and they are difficult to handle. Now a team of scientists have discovered how to make it flexible so that it does not break so easily. This means there are a lot of ways in which it can be used to solve problems.
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It is nicknamed frozen smoke, solid smoke or blue smoke due to its translucent nature and the way light scatters in the material; however, it feels like exploded polystyrene (Styrofoam) to the touch.
Aerogels posses the lowest density and highest internal surface area of any known solid material, which makes them extremely high performance material for collision, damping, acoustic and thermal insulation, structural support and surface chemistry.
Properties:
    1. Extremely low density
    2. Very good thermal insulator
    3. High specific surface area
    4. Lowest dielectric constant
    Metal aerogel Properties:
      1. High specific surface area (100-500m2/g)
      2. Electrically conductive!
      3. Enhanced catalytic activity
      4. Surprisingly capable thermal insulator
      Interesting Facts:
        1. A paperclip has a mass of approximately one gram. A one gram sample of aerogel has an internal surface area of between 250 and 3000m2 per gram (when produced in a weightless environment).
        2. Lowest solid density: The lightest man-made material is an Aerogel with a density of only three times the density of air. However industrial aerogels can be made denser, up to 0.6 g/cc or more.
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          1. Highest porosity: Perhaps the only material that can have over 95% porosity, and a very wide pore size distribution, ranging from Angstroms (10-10 meter) to microns (10-6 meter).
          2. Very high surface area: For some Aerogels, one ounce can have a surface area equal to a football field (over 3000 square meters per one gram).
          3. Versatile compositions: Aerogels can be made with a wide range of chemical compositions.
          4. Functional properties by design: Combinations of the above features can lead to Aerogel materials with useful properties such as:
            • adsorbents,
            • catalysts,
            • insulators,
            • semiconductors,
            • piezoelectric,
            • dielectric,
            • ferroelectric,
            • diffusion controllers,
            • electric conductors,
            • electric insulators,
            • and optical features.
          5. Can hold (theoretically) 500 to 4,000 times its weight in applied force.
          Types of Aerogels:
          1. Silica:
          •Silica aerogel is the most common type of aerogel and the most extensively studied and used. It is a silica-based substance, derived from silica gel.
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          •The world’s lowest-density solid is a silica Nano foam at 1 mg/cm3, which is the evacuated version of the record-aerogel of 1.9 mg/cm3.The density of air is 1.2 mg/cm3.
          •Silica aerogel strongly absorbs infrared radiation. It allows the construction of materials that let light into buildings but trap heat for solar heating.
          •It has remarkable thermal insulative properties, having an extremely low thermal conductivity: from 0.03 W/m·K down to 0.004 W/m·K, which correspond to R-values of 14 to 105 for 3.5 inch thickness. For comparison, typical wall insulation is 13 for 3.5 inch thickness. Its melting point is 1,473 K (1,200 °C or 2,192 °F).
          •Silica aerogel holds 15 entries in Guinness World Records for material properties, including best insulator and lowest-density solid.
          2. Carbon:
          •Carbon aerogels are composed of particles with sizes in the nanometre range, covalently bonded together. They have very high porosity (over 50%, with pore diameter under 100 nm) and surface areas ranging between 400–1000 m²/g. They are often manufactured as composite paper: non-woven paper made of carbon fibres, impregnated with resorcinol-formaldehyde aerogel, and pyrolyzed.
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          • Depending on the density, carbon aerogels may be electrically conductive, making composite aerogel paper useful for electrodes in capacitors or deionization electrodes. Due to their extremely high surface area, carbon aerogels are used to create super capacitors, with values ranging up to thousands of farads based on a capacitance of 104 F/g and 77 F/cm³.
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          •Carbon aerogels are also extremely "black" in the infrared spectrum, reflecting only 0.3% of radiation between 250 nm and 14.3 µm, making them efficient for solar energy collectors.
          Manufacturing:
          Aerogels a formed by a process known as supercritical drying, in which the liquid from the gel base is removed and replaced by a gas, leaving a solid structure.
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          It is prepared like gelatine by mixing a liquid silicon compound and a fast-evaporating liquid solvent, forming a gel that is then dried in an instrument similar to a pressure cooker.
          The mixture thickens, and then careful heating and depressurizing produce a glassy sponge of silicon.
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          Recent Development:
          NASA’s Glenn Research Centre developed a polymer Aerogel which is strong, flexible, and robust against folding, creasing, crushing, and being stepped upon. These aerogels are among the least dense solids, possess compressive specific strength similar to aerospace grade graphite composite, and provide the smallest thermal conductivity for any solid.
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          The new aerogels are up to 500 times stronger than their silica counterparts. A thick piece actually can support the weight of a car.
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          Silica aerogels would crush to powder if placed under a car tire. As seen above, the same is not true of the new polymer aerogels, even if the car is only a Smart car. Overall, the mechanical properties are rather like those of a synthetic rubber, save that the aerogel has the same properties (and far smaller thermal conductivity) with only about 10 per cent of the weight.The new class of polymer aerogels also have superior mechanical properties. For example silica aerogels of a similar density have a resistance to compression and tensile limit more than 100 times smaller than the new polymer aerogels. And they can be produced in a thin form, a film so flexible that a wide variety of commercial and industrial uses are possible.
          Applications:
          Example 1:
          Military aeroplane and helicopter engines produce a lot of heat. This means they can be attacked by heat-seeking missiles. If the engine is surrounded by a layer of Aerogel, then less heat escapes for the missiles to detect.
          Example 2:
          Aerogel can also be used to stop heat from escaping from hot water pipes. When heat escapes energy is wasted, which means more of the earth’s energy supplies are used up. Lots of other materials can be used to stop heat escaping, so that aerogel was used.
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          Example 3:
          Scientists look at the dust from comets to find out what the Solar system was like when it was first formed. They want to know what the dust is made of and what shape it is. But it is hard to catch the fast moving dust. If the dust rubs against anything, friction makes the dust hot which can change it. If the dust hits anything hard, that can also change its shape. So scientists use Aerogel in a dust collector on the Stardust spacecraft. As the very small dust particles go through the Aerogel they leave little paths. These paths are used to find the dust particles when the probe comes back to Earth.
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          More Applications:
          1. Fire retardant
                1. Oven (regular, pizza, etc.)
                2. Grill
                3. Furnace
                4. Blacksmith forge
                2. Insulation (hot or cold):
                a. Auto
                  1. Air intake
                  2. Engine
                  3. Exhaust
                  4. Manifolds
                  b. Clothing – Only for cold, not warm, since it’ll trap body heat!
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                  c. Home
                    1. Furnace
                    2. Grill
                    3. Kitchen
                      1. Oven
                      2. Pot holders
                      3. Pots and pans
                      4. Coolers and refrigerator’s
                    4. Pipes & air ducts
                    5. Walls & Roof
                    6. Windows