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Bioenergy Basics

Biomass (organic matter) can be used to provide heat, make fuels, and generate electricity. This is called bioenergy. Wood, the largest source of bioenergy, has been used to provide heat for thousands of years. But there are many other types of biomass--such as wood, plants, residue from agriculture or forestry, and the organic component of ...

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BioenergyBasics
Geology

Bryce Canyon

Bryce Canyon is a small national park in southwestern Utah. Named after the Mormon Pioneer Ebenezer Bryce, Bryce Canyon became a national park in 1924. ... Continue reading

BryceCanyon
Physics

The Coriolis Effect

The Earth, rotating at about 1000 miles per hour (1,609 km/hr), influences the flow of air and water on its surface. We call this the Coriolis Effect, named after French scientist Gaspard Coriolis, ... Continue reading

Coriolis
Biology

A Sweaty Subject

When human body temperature rises, tiny muscles around the sweat glands in the skin contract, squeezing perspiration - better known as sweat - out through the pores. Sweat is about 99 percent water. ... Continue reading

Sweat
Biology

Who Moved My Moldy Cheese?

There are few things less appetizing than a fuzzy, moldy piece of cheese. However, one of the most popular cheeses, Blue Cheese and its varieties, the French Roquefort, the English Stilton and the ... Continue reading

MoldyCheese

The Importance of Cave and Karst Systems

ImportanceofCaveaKarstSystemsCave and karst systems are important for two major reasons. First, the overwhelming majority of the nation's freshwater resources is groundwater. About 25% of the groundwater is located in cave and karst regions. The protection and management of these vital water resources are critical to public health and to sustainable economic development. As identified by the National Geographic Society, water resources are a critical concern as society enters the twenty-first century. Second, caves are storehouses of information on natural resources, human history and evolution. Therefore, many avenues of research can be pursued in caves. Recent studies indicated that caves contain valuable data that are relevant to global climate change, waste disposal, groundwater supply and contamination, petroleum recovery, and biomedical investigations. Caves also contain data that are pertinent to anthropologic, archaeologic, geologic, paleontologic, and mineralogic discoveries and resources.

Many researchers have turned to caves as natural laboratories where over eons paleoclimatic evidence has been naturally deposited and is awaiting discovery. For example, the recently discovered Lechuguilla Cave in New Mexico has excited scientists with the possibilities of gaining insight into global warming from analyses of materials found there. Cave-dwelling organisms have specialized adaptations such as extreme longevity and enhanced sensory perceptions. The adaptations reveal much about the evolutionary responses to past environmental changes and may provide valuable clues to current climate change. Many caves act as natural traps for flora and fauna, and new species of extinct animals such as a mountain goat and a bush oxen related to the present day muskox (Ovibus moschatus) have been discovered from paleoentological excavations in caves. These discoveries add to the knowledge of paleo-fauna and are an aid to understanding changes in the global climate.

Caves have always been known as repositories of archeological material. Historic and prehistoric cultural remains in caves are extraordinarily diverse. They range from ancient torch smudges on cave ceilings to civil war age saltpeter vats used to make gun powder. In spite of this diversity, the cultural resources have common attributes: they are subtle, elusive, or fragile or all three; and they provide unique and valuable information about the past. Without proper documentation and research of these hidden cultural remains in deep or shallow caves, valuable and important segments of the human history would be lost for all time.