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A New Twist on Fiber Optics

By twisting fiber optic strands into helical shapes, researchers have created unique structures that can precisely filter, polarize or scatter light. Compatible with standard fiber optic lines, these hair-like structures may replace bulky components in sensors, gyroscopes and other devices. While researchers are still probing the unusual properties ...

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ANewTwistonFiberOptics
Astronomy

Hats Off to the Sombrero

This nearly edge-on view of the Sombrero galaxy shows that the disks of spiral galaxies are incredibly thin. The majestic spiral arms cannot be seen in this side view of the Sombrero, named because it ... Continue reading

HatsOfftotheSombrero
Chemistry

Radon, A Rare Element

To the best of our knowledge, the entire universe is constructed from just over a hundred different types of building blocks called atoms. Each has its own characteristic properties, and while there ... Continue reading

RadonARareElement
Biology

Neurons

Until recently, most neuroscientists thought we were born with all the neurons we were ever going to have. As children we might produce some new neurons to help build the pathways - called neural ... Continue reading

Neurons
Medicine

Encephalitis and Meningitis

Encephalitis and meningitis are inflammatory diseases of the membranes that surround the brain and spinal cord and are caused by bacterial or viral infections. Viral meningitis is sometimes called ... Continue reading

EncephalitisandMeningitis

When Do We Encounter Ionizing Radiation In Our Daily Lives?

IonizingRadiationEveryone who lives on this planet is constantly exposed to naturally occurring ionizing radiation (background radiation). This has been true since the dawn of time. The average effective dose equivalent of radiation to which a person in the United States is exposed annually is estimated to be about 350 millirem. (A millirem is a unit that estimates the biological impact of a particular type of radiation absorbed in the body.)

Sources of background radiation include cosmic rays from the sun and stars; naturally occurring radioactive materials in rocks and soil; radionuclides (unstable radioactive counterparts to naturally stable atoms) normally incorporated into our body's tissues; and radon and its products, which we inhale. Radon exists as a gas and is present in soil from which it seeps into the air. Radon gets trapped inside buildings, especially if the ventilation is poor. Levels of environmental radiation depend upon geology, how we construct our dwellings, and altitude. For example, radiation levels from cosmic rays are greater for people on airplanes and those living on the Colorado plateau. This low-level background radiation is a part of the earth's natural environment and any degree of risk associated with it has not been demonstrated to date.

We are also exposed to ionizing radiation from man-made sources, mostly through medical procedures. On the average, doses from a diagnostic x-ray are much lower, in dose effective terms, than natural background radiation. Radiation therapy, however, can reach levels many times higher than background radiation but this is usually targeted only to the affected tissues. Besides extremely small amounts of ionizing radiation from color televisions and smoke detectors, there are small amounts of ionizing radiation in many building materials and mining and agricultural products, such as granite, coal, and potassium salt. People who smoke receive additional radiation from radionuclides in tobacco smoke.