ScienceIQ.com

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
Physics

The Early Universe Soup

In the first few millionths of the second after the Big Bang, the universe looked very different than today. In fact the universe existed as a different form of matter altogether: the quark-gluon ... Continue reading

TheEarlyUniverseSoup
Physics

Your Own Personal Rainbow?

Did you know that no two people ever see the very same rainbow? It's true. Rainbows are formed when light enters a water droplet, reflects once inside the droplet, and is reflected back to our eyes ... Continue reading

Rainbows
Geology

1816 - The Year Without A Summer

Most global temperature change occurs over a long period of time, centuries rather than years, and in small increments. But in 1816, the Northeastern part of the United State and Northern Europe were ... Continue reading

1816YearSummer
Astronomy

Pluto Is Way Out There

Long considered to be the smallest, coldest, and most distant planet from the Sun, Pluto may also be the largest of a group of objects that orbit in a disk-like zone of beyond the orbit of Neptune ... Continue reading

PlutoIsWayOutThere

How Do They Grow Those Colossal Pumpkins?

ColossalPumpkinsThose enormous pumpkins that set records every fall are living proof that both genes and environment make living things what they are. Home gardeners out to break the 2002 record for the world's largest pumpkin--held by Charlie Houghton of New Boston, New Hampshire whose colossus tipped the scales at 1,337.6 pounds--must be masters of both genetics and ecology.

Enormous pumpkins start from seed, but not just any seed will do. Most record-seeking pumpkin growers choose a single variety, Howard Dill's patented Atlantic Giant. It was selectively bred not for a single gene, but for a combination of genes that promote the maximal volume, number, and size of individual cells, as well as accelerated metabolism and growth rate. Two cotyledons sprout from an Atlantic Giant seed. These seed leaves were already present in the embryo inside the seed. They nourish the plant before true leaves, which can photosynthesize, appear. Atlantic Giant starts out big and gets bigger by the day. Its cotyledon pair typically measures 6 to 9 inches across. Its true leaves can grow as large as elephant's ears, and its blossoms are as big as dinner plates.

The skill of giant pumpkin growers lies in the care and feeding of the pumpkin vines. Environmental factors that affect size include watering, temperature, and sunlight. Fertilizing is critical, because the plants are voracious consumers of nitrogen, phosphorus, potassium, and other elements in the soil. The organic matter in compost and rotted manure is the best source, some growers say. Pumpkin planters use sulfur or lime to adjust soil pH to the slightly acidic range, between pH 6.5 to 6.8. Record-seeking growers usually build temporary greenhouses to protect their plants from frost, hail, and wind during the early weeks of growth. They pollinate the female flowers by hand to ensure that fruit set early. That gives their garden gargantuans the longest possible growth season before the competitive pumpkin weigh-ins held nationally and internationally each autumn.