ScienceIQ.com

Does Anybody Really Know What Time It Is?

So, 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 ...

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TimeAnybody
Mathematics

Picture This

What 3 dimensional shape will pass through a rectangle, triangle and circle each time filling the whole space? The answer may surprise you in it's simplicity. Before I tell you what it is, see if you ... Continue reading

PictureThis
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
Physics

Neutrinos to the Rescue

Have you ever wondered what the most abundant particle in the universe is after photons of light? The answer is: Neutrinos. These tiny, neutral and almost mass-less particles that move at almost the ... Continue reading

Neutrinos
Physics

Newton's First Law of Motion

Sir Isaac Newton first presented his three laws of motion in the 'Principia Mathematica Philosophiae Naturalis' in 1686. His first law states that every object will remain at rest or in uniform motion ... Continue reading

NewtonsFirstLawofMotion

It's A Bird, It's A Plane -- No, It's A Clam!

BirdClamNot all animals glide or fly in the air. Many marine animals are masters of 'flight' and speed under the water. The ocean environment brings its own set of adaptations and specializations for the animals that move through it. One type of locomotion in the water is jet propulsion. The simplest example of this can be seen in jellyfish. These animals fill their umbrella section with water and then push the water out, sending the jellyfish in the opposite direction. This type of movement does not allow much control over direction. Salps are another simple animal that use jet propulsion to move. These animals are related to sea squirts and live in large chains, some as long as 100 feet. Each individual salp has two siphons (a tube for moving water), one for taking water in and one for expelling water. They have bands of muscles easily seen in their transparent bodies that contract and expand, forcing water in and out of the siphons. This propels the animal forward, but still with no control.

A more complex animal using jet propulsion is the squid. Some squid are able to reach speeds high enough to shoot them out of the water and onto the decks of passing ships! The squid has a muscular mantle (outer covering) which, when expanded, fills with water. When these muscles contract, water is expelled through a single siphon and the squid is propelled in the opposite direction. The squid can control its direction by rotating (moving) the siphon. Often the expulsion of water is accompanied by a puff of dark ink from the squid's ink sac in order to deter predators from following.

Several species of bivalves (two-shelled animals) such as scallops also use jet propulsion to get away from enemies, such as a predatory sea star. To do this the scallop must contract its two shells, which forces water out sending the scallop to safety. This is very exhausting and cannot be repeated often. Luckily, the scallop's predators are slow moving! Clams also use jet propulsion to move.