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Fireworks Grow Up!


New technology lights up the millennium

One million people watched 20 tons of fireworks fireworks: see pyrotechnics.
fireworks

Explosives or combustibles used for display. Of ancient Chinese origin, fireworks evidently developed out of military rockets and explosive missiles and accompanied the spread of military explosives westward to
 blaze over Harbour Bridge Harbour Bridge or Harbor Bridge may refer to:
  • Auckland Harbour Bridge, in Auckland, New Zealand
  • Great Egg Harbor Bridge, in New Jersey, United States
  • Sydney Harbour Bridge, in Sydney, Australia
  • Wick Harbour Bridge, in Wick, Scotland
 in Sydney, Australia

It may be one of the defining moments of the new millennium. As the 20th century drew to a close, millions watched as TV cameras around the world zoomed in at midnight, January 1, 2000. The planet was united in celebration as a sea of humanity witnessed the launch of a new century--and the most awesome fireworks shows in history.

Twenty-four minutes of dazzling explosions glittered 1,000 meters (3,281 feet) above the Sydney Opera House Sydney Opera House

Performing-arts centre on the harbour in Sydney, Australia. Its dynamic, imaginative design by Danish architect Jørn Utzon (b. 1918) won a competition in 1957 and brought Utzon international fame.
 in Australia. In Paris, fiery streams of red and blue transformed-the Eiffel Tower Eiffel Tower, structure designed by A. G. Eiffel and erected in the Champ-de-Mars for the Paris exposition of 1889. The tower is 984 ft (300 m) high and consists of an iron framework supported on four masonry piers, from which rise four columns uniting to form one  into a rocket ship rocket ship
n.
A spacecraft powered and propelled by rockets.
 ready for blastoff. And in Washington D.C., the 168-meter-high Washington Monument Washington Monument, obelisk-shaped tower, 555 ft 5 1-9 in. (169.3 m) high, located on a 106-acre (43-hectare) site at the west end of the Mall, Washington, D.C.; dedicated 1885.  blazed with a cascade of electric white stars like a giant diamond water-fall. What was behind these showstoppers? Famous fireworks designers like the Grucci family (who created the Washington Monument spectacle), basic science, and new technology!

How FIREWORKS WORK

At the core of pyrotechnics pyrotechnics (pī'rōtĕk`nĭks, pī'rə–), technology of making and using fireworks. Gunpowder was used in fireworks by the Chinese as early as the 9th cent.  (the science and art of fireworks) lies basic chemistry. Working in a lab, pyrotechnicians (fireworks experts) carefully pack papier-mache shells with powdered chemical compounds, molecules combining atoms of two or more elements. The compounds determine the color of a firework when it explodes. For example, shells stuffed with an aluminum mixture (containing barium, an element that stabilizes fireworks) produce brilliant white sparks. Compounds with the element strontium strontium (strŏn`shēəm) [from Strontian, a Scottish town], a metallic chemical element; symbol Sr; at. no. 38; at. wt. 87.62; m.p. 769°C;; b.p. 1,384°C;; sp. gr. 2.6 at 20°C;; valence +2.  emit fluorescent red dazzlers, while lithium compounds create purple fireworks.

Shells launched into the sky are called aerials. But not all shells soar upwards Verb 1. soar upwards - rise rapidly; "the dollar soared against the yen"
soar, soar up, surge, zoom

go up, rise, move up, lift, arise, come up, uprise - move upward; "The fog lifted"; "The smoke arose from the forest fire"; "The mist uprose from the
. Some are mounted onto grids on the ground to form words or numbers like 2000. These shells, called set pieces, explode in place, lighting up the grid. When a shell is lit, chemicals inside react with each other--bonds between chemical atoms break and rearrange to form new chemicals. This exothermic exothermic /exo·ther·mic/ (-ther´mik) marked or accompanied by evolution of heat; liberating heat or energy.

ex·o·ther·mic or ex·o·ther·mal
adj.
1.
, or energy-releasing, reaction releases energy in three forms: heat, light, and sound--key ingredients in any fireworks blowout.

ENTER COMPUTERS!

There's more to fireworks than chemical collisions. "Computers have revolutionized the way we design firework shows," says expert Philip Butler of Fireworks by Grucci Fireworks by Grucci (or simply Grucci) is a fireworks company headquartered in Brookhaven on New York's Long Island. It has been a family run business since 1850. The company's main pyrotechnics manufacturing operations are in Brookhaven, with a second factory in Radford, . Computer programs help coordinate the synchronized firing of thousands of fireworks from just one or two stations called firing panels. also help trigger explosions faster and with more precision.

When President Clinton pushed the button on the firing panel for the Washington Monument fireworks, he launched a computer-generated display dreamed up by the Gruccis. To the eye it looked like a fireball fireball, very bright meteor leaving a trail in the sky that can remain visible for several minutes; often a distinct sound, perhaps caused by very low frequency radio waves, is associated with it.  on water. A two-story-high wall of electric white sparks raced over the 610-meter (2,001-ft)-long reflecting pool
This page is about the general memorial; for the one in Washington, D.C. see Reflecting Pool.


A reflecting pool is a structure often used in memorials. It generally consists of a shallow pool of water, usually quite calm.
 toward the monument base.

What's the pyrotechnic trick? First, the button sets off a moving electrical charge, or current. The current sends an electrical signal to a computer inside the firing panel that sends ignition cues to the fireworks. (For the fireball stunt, pyrotechnicians rigged fuses to tiny rockets set up every six meters.) A computer-generated electric signal races along a wire until it smashes into a metal match head, a small ball resembling a real match head. When the current hits a match head, the head ignites a spark. The spark lights a fuse, and the burning fuse lights the rocket. The resulting heat causes chemical gases inside the rocket to expand, creating pressure inside the rocket. This pressure forces gases to burst through a small hole at the top of the rocket, projecting giant sparks 12 meters into the air.

In less than a millisecond One thousandth of a second. See space/time and ohnosecond.

(unit) millisecond - (ms) One thousandth of a second, one thousand microseconds. A long time for a modern computer.
, the computer transmits another electrical signal to the next fuse. KABOOM again! A second burst of sparks shoots into the air. The computer continues to send firing signals to the rockets, igniting them one after another. Like falling dominoes, it appears as if the ball of sparks is speeding down a line.

A stunt like this would be impossible without computers, says Butler. "Only a computer is fast enough to send a firing signal every millisecond." In fact, computers are so fast and precise they allow technicians to match individual firework explosions to notes in a song!

AIR SHOW

Aerial fireworks work differently than ground pieces. An electric signal ignites two fuses attached to a shell--a quick-match fuse and a time-delay fuse connected to a lift charge--before it ever leaves the ground (see diagrams, p. 17). The quick-match fuse and lift charge send a jet of fire to black powder black powder
n.
An explosive mixture of saltpeter, charcoal, and sulfur, formerly used in firearms.
 (similar to gunpowder) buried inside the shell. As the black powder bums, it emits the energy necessary to hurl the firework into the sky.

As the shell soars into the air, the burning time-delay fuse ignites chemical-packed pellets called stars, which are buried inside the shell. The heat transmitted by the time-delay fuse causes chemical bonds in the stars to shatter, releasing energy. The exothermic reaction transforms the mixture of chemical powders into hot gases that expand rapidly. Suddenly, the star blows the shell open, creating a dazzling show.

With the marriage of chemistry and computers, fireworks are booming. Unfortunately, you'll never see the spectacular fireworks show that lit up the Washington Monument again. The display was a once-in-a-lifetime event made possible by temporary scaffolding surrounding the Monument. But get ready for July Fourth!

Exothermic Reaction

Chemical reactions like firework explosions are exothermic--the end result is the release of energy. Fireworks start out with a set amount of energy (1). When a firework is lit (2), it starts to absorb energy from the spark. This activation energy causes the reaction to occur. Once the firework's molecules absorb the activation energy, an explosion begins to take place (3). Energy is released in the form of heat, light, and sound (4).
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Title Annotation:new fireworks technology
Author:Dyer, Nicole
Publication:Science World
Article Type:Brief Article
Date:Mar 6, 2000
Words:941
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