Showing posts with label Most. Show all posts
Showing posts with label Most. Show all posts

Monday, 11 August 2014

Quantum Particles Take the Road Most Traveled

Quantum Particles Take the Road Most Traveled 

For the first time ever, physicists have mapped the path that particles are most likely to take when moving from one quantum state to another.
In physics, a concept called the "path of least action" describes the trajectory that an object is most likely to follow, similar to the familiar concept of the "path of least resistance." For example, a tossed football follows a parabolic arc through the air instead of spinning off in crazy loops or zigzags. That's because a parabola path requires fewer "actions" than a looped or zigzag path.
However, physicists didn't know whether quantum particles, like electrons, neutrinos or photons, follow the same rule. Many of the classic rules of physics don't seem to apply to these tiny particles. Instead, they are governed by the weird rules of quantum mechanics that even Einstein called "spooky." [Wacky Physics: The Coolest Little Particles in Nature]
Quantum particles can exist in states where they are in multiple places at once — a phenomenon called superposition. A mathematical equation called a wave function describes the many possible locations where a quantum particle might simultaneously exist. But as soon as someone tries to measure the location or the velocity of one of these particles, its wave function collapses and the particle will appear in only one spot, falling back under the laws of conventional physics.
This makes studying quantum particles extremely difficult, because the moment scientists start probing around, the particles' quantum states collapse. However, physicists have developed a way to isolate the wacky quantum world and peer into it in a noninvasive way; this allows them to map the path that particles are most likely to take when changing from one state to another.
"It's a great breakthrough in terms of being able to monitor quantum systems,"Andrew Jordan, a physicist at the University of Rochester, who worked on the original theory, told Live Science. "We're just scratching the surface of the kinds of physics permitted here."
Jordan developed the theory, and brought the idea to experimental physicists at the University of California, Berkeley and Washington University in St. Louis who helped design an experiment to test it. Kater Murch, a professor of physics at Washington University, sketched out possible paths that the particles might take, then polled the research team to see which path they thought the experiment would most likely reveal.
"We're all experts, but no one agreed,"Murch told Live Science. "We had no idea how one quantum state gets to another."
The team used a superconducting quantum device, essentially a circuit inside a box made out of copper, Murch explained. The system is modeled after an atom. It has multiple quantum energy levels just like an atom, and it's sometimes referred to as an "artificial atom," Murch said.
The researchers beamed a stream of microwave particles into the box. These particles interacted with the superconducting circuit and then reflected back out. Along the way, the particles ended up in either a ground state (the lowest energy state) or an excited state (any state with a higher energy level than the ground state). An infinite number of superpositions exist between these two states, so the researchers repeated the experiment 1 million times to determine the most commonly occurring path.
The results revealed that the particles most frequently travel a convex curve. The equation is simple, and it's fairly easy to calculate the path the particles are most likely to take, Jordan said.
Murch said the results of the experiment could be a step toward the "holy grail"of chemistry – maximizing the efficiency of chemical reactions.
"At its most basic level, a chemical reaction changes quantum states from one to another," Murch said. "Understanding that route could help chemists produce more efficient chemical reactions."
The research could also one day lead to a way for physicists to directly control quantum systems, Jordan said.
Details of the experiment were published in the July 31 issue of the journal Nature.

Saturday, 9 August 2014

Toothache Drug Most Powerful Traditional

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Toothache

Toothache is one of several most well-known disease and the most excruciating. The pain of a toothache so real, as if the tooth was throbbing, sometimes plus headache and fever, then the toothache sufferers become very sensitive to noise and irritable. Toothache pain can only be matched by the liver. It feels like to be removed just let ga sore tooth aches ever again.

Causes of toothache can be several things, including cavities, cracked, eroded, most chewing gum, or even infected gums. Well, here are some traditional herbs to treat toothache

Garlic

Based on the book Jude's Herbal Home Remedies, written by Jude C. Todd, garlic can cure toothache or tooth decay because it contains antiseptic compounds. Take a clove of garlic and put it in gear. Do it for 5 minutes, then remove the garlic and rinse the mouth with warm water.

Leaf Clove

Clove is a spice which is material in the manufacture of cigarettes. However, clove leaf proved to have efficacy in treating toothache. The trick, wash some leaves cloves, brewed with boiling water, then crushed. Wring the cloth. Moisten a cotton swab with the liquid, tucked into a hole aching tooth.

Oil of cloves

A study in the Journal of Dentistry in 2006 found that clove oil can also relieve toothache.

Give 2-3 drops of clove oil to the cotton and then rub it on the teeth. If using cloves, first wet with saliva or chew-chew before it is put on the teeth.

Tea Warm

In the book Prescription for Herbal Healing by Phyllis A. written Balch, said tea can be used to treat toothache. Hot tea helps eliminate bacteria in the mouth and reduce the pain temporarily. Place the tea bags in the gum to help stop the inflammation. Should not be mixed with sugar in hot tea.

Cayenne pepper

Small chili is a phrase to describe something that is small but has a lot of advantages. In terms of overcoming toothache, this is not just an expression. Cayenne contains capsaicin compound that serves as a pain reliever. Dissolve chili into hot water, dip cotton, squeeze a little and put it in gear.

Sap Distance

Jatropha does have many benefits for human life. In addition to the distance the fruit oil is now being pursued as an alternative fuel, the sap of the tree this distance was efficacious treat pain cavities. The trick is easy, simply by dripping sap on the distance cavities. Or it could also take the sap distances using cotton, cotton and then enter the cavities.

Swamp Cabbage root

Who would have thought that vegetables can make sleepiness if taken too much of this can also be used as a drug to treat toothache. How: Provide a handful of spinach root, 1/2 teaspoon vinegar, boiled with 1 cup water. Use boiled water to rinse.

Roots Meniran
So far as we know meniran herbs to treat kidney disease, urinary tract disorders, hepatitis and dysentery. But it turns out the root meniran also efficacious to treat toothache. How: Rinse the roots meniran, then chew-chew on the aching tooth.

Lemongrass

Lemongrass (not a nut), also known as citronella. Usually used as a spice in the kitchen especially for pepes to add flavor. How: Boil 40 g of fresh lemongrass with 2 cups of water until the water half. Use this mixture to rinse.

Ice cubes

Using ice cubes are known to reduce pain and swelling on the teeth and gums. Insert ice cubes in a cloth bag or to an area hospital and let stand for 5-10 minutes. Do this 2 times a day, but if conditions do not improve, get medical attention.