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Rock, Mineral, Crystal, or Gemstone?

Rocks and minerals are all around us and used every day, perhaps without us even being aware of them. Besides making up the solid, supporting surface of the earth we live and move upon daily, rocks and minerals are used in surfacing roads, in the concrete foundations of our homes, in the brick and mortar of buildings, in clocks, and for scientific ...

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RockMineralCrystalGemstone
Chemistry

Spontaneous Combustion

Most of us know if we leave oily rags or papers in an enclosed area, we risk a fire. The process of burning is called oxidation. Oxidation is the same process that causes iron to rust or a banana to ... Continue reading

SpontaneousCombustion
Geology

Is The Sea Really On The Level?

When we measure the height of mountains, we measure from a constant number called sea level. For instance Mount Whitney in California is 14,494 feet (4,418 m) above sea level. We start at 0 feet and ... Continue reading

SeaLevel
Geology

Will Runaway Water Warm the World?

Water in the upper atmosphere will make the Earth heat up, but not as much as many scientists have believed, says a new study published by NASA scientists. Using satellite data, researchers Ken ... Continue reading

WillRunawayWaterWarmtheWorld
Biology

Gestation Periods of Mammals

Gestation period is the time from fertilization to the actual birth in animals. In humans this period is 266 days or approximately 9 months. ... Continue reading

GestationPeriodsofMammals

Does Anybody Really Know What Time It Is?

TimeAnybodySo, what, exactly, is the watch on your wrist, Big Ben in London, or the national atomic clock in Boulder, Colorado, actually measuring? The first definition of a second was 1/86,400 of the average solar day; in other words, a division of the average period of rotation of Earth on its axis relative to the Sun. This definition lasted until the mid-20th century, when the needs of international air and sea navigation and international communications required much more precise measurements of time. In 1956, the International Committee on Weights and Measures redefined the second to be 1/31,556,925.9747 of the length of the year 1900. This definition, known as the second of Ephemeris Time, was ratified by the General Conference on Weights and Measures in 1960. The definition was not to last very long, however, because of new developments in atomic physics.

In 1949, Harvard professor Norman Ramsey had developed a method of studying the structure of atoms by sending them through two oscillating electromagnetic fields. The procedure allowed a microwave oscillator to be synchronized with the unvarying atomic oscillations and could be used to measure the passage of time with great precision, thus providing the basis for the modern cesium atomic clock. In 1964, the International Committee on Weights and Measures acknowledged this new type of clock by provisionally defining the second based on the microwave frequency that drives the transition between two energy levels of a cesium-133 atom. In 1967, this definition became the sole definition of the second.