THIS BLOG CURRENTLY IS INACTIVE. THANK YOU FOR STOPPING BY . . . . THIS BLOG CURRENTLY IS INACTIVE. THANK YOU FOR STOPPING BY . . . . THIS BLOG CURRENTLY IS INACTIVE . . . . THANK YOU FOR STOPPING BY.
Showing posts with label moon. Show all posts
Showing posts with label moon. Show all posts

Sunday, March 8, 2009

Is 'Full-Moon Madness' a Myth?


The familiar concept of “full-moon madness” is being examined in the harsh light of day by a number of scientists who now are concluding it’s mostly … well, lunacy.

Essentially, the scientists say the condition is a psychological urban legend, according to an article in the new issue of Scientific American. But if it’s just a legend, why is it so widespread?

  • Media coverage almost surely plays a role. Scores of Hollywood horror flicks portray full-moon nights as peak times of spooky occurrences such as stabbings, shootings and psychotic behaviors.
  • Perhaps more important, research demonstrates that many people fall prey to “illusory correlation” ~ the perception of an association that does not in fact exist. For example, many people who have joint pain insist that their pain increases during rainy weather, although research disconfirms this assertion. Much like the watery mirages we observe on freeways during hot summer days, illusory correlations can fool us into perceiving phenomena in their absence.

As for how the full-moon notion got started, the article quotes psychiatrist Charles Raison of Emory University:

According to Raison, the lunar lunacy effect may possess a small kernel of truth in that it may once have been genuine. Raison conjectures that before the advent of outdoor lighting in modern times, the bright light of the full moon deprived people who were living outside ~ including many who had severe mental disorders ~ of sleep. Because sleep deprivation often triggers erratic behavior in people with certain psychological conditions, such as bipolar disorder (formerly called manic depression), the full moon may have been linked to a heightened rate of bizarre behaviors in long-bygone eras. So the lunar lunacy effect is, in Raison and his colleagues’ terms, a “cultural fossil.”

Click here to read the complete Scientific American article.

Thursday, December 11, 2008

Friday's Moon Largest, Brightest of 2008


NASA reports that tomorrow night’s full moon is the largest and brightest of the entire year. It’s what is known as a “perigee” moon, which means it’s closer, brighter, and 14% larger than most full moons.

Here’s information from NASA’s press release:
It's no illusion. Some full Moons are genuinely larger than others and this Friday's is a whopper. Why? The Moon's orbit is an ellipse with one side 50,000 km closer to Earth than the other: diagram. In the language of astronomy, the two extremes are called "apogee" (far away) and "perigee" (nearby). On Dec. 12th, the Moon becomes full a scant 4 hours after reaching perigee, making it 14% bigger and 30% brighter than lesser full Moons we've seen earlier in 2008.

A perigee Moon brings with it extra-high "perigean tides," but this is nothing to worry about, according to NOAA. In most places, lunar gravity at perigee pulls tide waters only a few centimeters (an inch or so) higher than usual. Local geography can amplify the effect to about 15 centimeters (six inches)--not exactly a great flood.

Okay, the Moon is 14% bigger, but can you actually tell the difference? It's tricky. There are no rulers floating in the sky to measure lunar diameters. Hanging high overhead with no reference points to provide a sense of scale, one full Moon looks much like any other.

The best time to look is when the Moon is near the horizon. That is when illusion mixes with reality to produce a truly stunning view. For reasons not fully understood by astronomers or psychologists, low-hanging Moons look unnaturally large when they beam through trees, buildings and other foreground objects. On Friday, why not let the "Moon illusion" amplify a full Moon that's extra-big to begin with? The swollen orb rising in the east at sunset may seem so nearby, you can almost reach out and touch it.

In 2004, Greek amateur astronomer Anthony Ayiomamitis photographed an apogee Moon and a perigee Moon, and set the images side by side to show the difference.

Click here for the complete NASA article.