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Covers aspects of personal safety relating to personal protective equipment (PPE) including eye protection, lab coats etc, safety screens, laboratory hygeine (including eating and drinking in a lab) a..
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Extracted, and refreshed from the Handbook, section 12. Includes very useful guidance on setting up and using oscilloscopes.
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Information on the hazards associated with trying to view the Sun, and how it can be done safely.
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Simple instructions on how to make a usb counter module for displaying the radioactive count from a GM tube onto a convenient projector screen.
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This important demonstration proves the existence of ions as charged particles. Using microscale, it can be carried out safely and quickly in a well ventilated laboratory and projected onto a screen s..
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The zip folder contains the software which enables readings from the Arduino millivoltmeter (see GL257 Make-it guide) to be displayed on a computer screen or larger screen via a data projector.
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This guide is to help the reader decide on which type of oscilloscopes they may wish to purchase, and explains the different features of oscilloscopes (and what is recommended for school science).
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Everything for the beginner, including buying, setting up, and using a camera in all sorts of laboratory situations, with practical examples.
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Explains what is meant by environmental monitoring, and the range of equipment available. Describes in detail each of the parameters which can be monitored including possible difficulties. Also descri..
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This guidance is for devices used in the school laboratory that emit
ultraviolet light. Ultraviolet light is classed as optical radiation
ranging in wavelength from 100 to 400 nm, below (in wavele..
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Showing results 1 to 10 of 155