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For this machine it is recommended youĮncase most of the X-ray tube (see Machine Assembly below for details) with a 1.2 inch thick wall of lead. Lead (as either sheets or bricks) is the most common radiation shielding material. To create a mounting platform for the X-ray machine. To prevent the X-ray tube from overheating by circulating air inside the shielding. To keep wire away from any metal objects that may cause arcing.įan most any tabletop style 6-7 inch fan will do. Rubber or styrofoam to use as insulating material Five are needed for the vacuum tubes listed above other brands may need more or less. To connect the power supply to the X-ray tube.Īlligator clips (5). Local hardware or home-construction store A variable high voltage power supply, capable of producing >20kV in adjustable increments, is better. The power supply must produce a minimum of 20,000 DC volts (20kV). This will help you make informedĭecisions about the type of radiation shielding you choose to purchase as well as other optional materials. Introduction to Radiation & Radiation Safety page before purchasing the materials. Make sure to read through the entire project and the The table below lists the materials needed to build the X-ray machine. This X-ray machine can be assembled for as little as $300, assuming you borrow a Geiger counter for safety purposes. United States Occupational Safety and Health Administration.United States Nuclear Regulatory Committee.United States Environmental Protection Agency.United States Center for Disease Control.You may also be interested in reading Matthew's firsthand account of how he and Blake built their first X-ray machine and began their adventures in radiation experimenting: Science (and Radiation Experiments) as a Summer Hobby. To safely build an X-ray machine and experiment with radiation, you must read all parts of this guide as well as an Introduction to Radiation & Radiation Safety. However X-rays, like other forms of radiation, can be dangerous. You can build an X-ray machine at home by carefully following this how-to guide.
Microsoft project on ultrasound machines how to#
As a Science Buddies 2011 Summer Science Fellow Matthew agreed to share his expertise about how to create a homemade X-ray machine. Together, Matthew and Blake took home the top ISEF prize. This resource was made possible by two enthusiastic high school students who developed this homemade X-ray machine to help them not only answer their many scientific questions, but also go on a fun scientific adventure.Ī plan for a homemade X-ray machine, an idea about how to increase the localized dose of radiation to cancer cells, and hours of researching, experimenting, and innovating-these were the ingredients for Matthew Feddersen and Blake Marggraff's success at the 2011 Intel International Science and Engineering Fair (ISEF). X-rays affect microorganisms, such as yeast, and developing the best X-ray images using film.
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The homemade X-ray machine can be used to do many relevant experiments, including but not limited to testing how Now you need to register the OLE DB 4.This is a resource for making and using a homemade X-ray machine safely.
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When one of those doesn't cause an error, stop, you've found the correct folder. (if it says The system cannot find the path specified, try the next one) Now you need to go to a special folder which might be c:\windows\system32 or it might be c:\winnt\system32 or it might be c:\windows\sysWOW64
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and press return again (keep doing this until the prompt shows :\> ) (also available from Start->Programs->Accessories->Command Prompt) The solution is to manually register those DLLs.
Microsoft project on ultrasound machines 64 Bit#
The .4.0 provider is not registered on the local machineĪmphis Customer is designed to work on 32 or 64 bit PCs running Windows XP, Windows Vista, Windows 7 or Windows 8 Pro, but on Windows XP 64 bit (and possibly other operating systems) it is possible that some of the Microsoft OLEDB DLLs have not been registered.