ScienceIQ.com

Ants Are Wimpy

It's common knowledge that ants can lift many times their own weight. We are frequently told they can lift 10, 20, or even 50 times their weight. It is most often stated something like this: an ant can lift over its head objects that weigh 20 times what the ant weighs. This is the equivalent of a 220 pound (100 kilogram) man lifting over 4,400 ...

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Ants
Geology

Earthquake Weather?

In the 4th Century B.C., Aristotle proposed that earthquakes were caused by winds trapped in subterranean caves. Small tremors were thought to have been caused by air pushing on the cavern roofs, and ... Continue reading

EarthquakeWeather
Chemistry

Luminol; Trick-or-Treat or Terrible Feat

What does trick-or-treating and crime scene investigation have in common? Hopefully, they don't have much in common, unless the trick-or-treater is wearing a safety glow stick. Glow sticks contain ... Continue reading

Luminol
Biology

How Did Dogs Evolve?

While the status of the dog as humankind's best and oldest friend remains unchallenged, debate rages about just how far back the friendship goes. Fossils of domesticated dogs appear in the remains of ... Continue reading

HowDidDogsEvolve
Geology

What is an Estuary?

An estuary is a partially enclosed body of water formed where freshwater from rivers and streams flows into the ocean, mixing with the salty sea water. Estuaries and the lands surrounding them are ... Continue reading

WhatisanEstuary

Leaning Wonder of Engineering

TowerofPisaMost everyone is familiar with the famous Leaning Tower of Pisa. It's known not so much for its engineering, as for the fact that it hasn't fallen yet. From an engineering standpoint, it is a study in what not to do, although the architectural elements of the tower are truly striking.

The bell tower stands 184 feet tall and currently leans almost 17 feet (5.18 m) out of alignment. Construction began on the tower in the year 1173 and was completed about 175 years later. Notably, the original builders excavated a foundation too shallow to reach bedrock, yet began building in earnest. It became apparent during construction of the third story that the tower was leaning. The solution - to build successive floors taller on the other side. This had little effect and the tower continued its tilting. Scientists have determined that the ground beneath the tower is composed primarily of clay and sand. Due to the weight of the structure and its compaction of the subsoil, the tower first tilted to the North and then settled into its current lean to the South.

It is remarkable that the tower hasn't fallen. Scientists have cited several factors for that - the long period of construction allowed the ground to stabilize, while the building material was inherently elastic. Over the ensuing years, many attempts were made to correct or at least halt the tilting, including pouring cement or lead, on several occasions, into the foundation. Today's update - the tower continues to lean.