Showing posts with label Nature's secrets. Show all posts
Showing posts with label Nature's secrets. Show all posts

What Causes Mass Extinctions?


They are known ominously as the Big Five—the five greatest mass extinctions over the past 500 million years, each of which is thought to have annihilated anywhere from 50 to 95 percent of all species on the planet.

Many unsolved mysteries remain regarding these disasters, perhaps the greatest of which is what caused each of them. But research is uncovering how these extinction events dictated the fate of life on this planet—for instance, determining which animals first crawled onto land and which ruled the oceans.

    * The K-T extinction

The most recent of the Big Five is the most familiar one—the cataclysm that ended the Age of Dinosaurs. The end-Cretaceous or Cretaceous-Tertiary extinction event, otherwise known as K-T, killed off all dinosaurs save birds roughly 65 million years ago, as well as roughly half of all species on the planet, including pterosaurs.

Not only did mammals sweep across the planet after K-T, but sharks expanded across the seas, explained American Museum of Natural History vertebrate paleontologist Jack Conrad.

"Throughout the Age of Dinosaurs, you always had these large reptile carnivores dominating the water, such as ichthyosaurs, mosasaurs and plesiosaurs," Conrad explained. "Only after they die do you see big sharks becoming really prevalent. You probably wouldn't have seen orcas or blue whales either had reptile dominance of the seas not gone by the wayside."

Although research suggests the planet was on the verge of environmental upheaval before the K-T extinction event, the straw that broke the dinosaur's back is widely thought to have been an impact with an asteroid or comet. Still, a number of researchers contend evidence commonly linked with such an impact, such as the metal iridium, which is rare on the Earth's crust, could also be caused by the massive volcanic eruptions at the Deccan Flats in India, another popular contender for the dinosaur-killing catastrophe.

    * The Triassic-Jurassic extinction

The end-Triassic, or Triassic-Jurassic extinction event about 200 million years ago is thought by many to possibly have set dinosaurs on the path to their 135-million-year domination of much of life on Earth. It also ended life for roughly half of all species.

Until this disaster, mammal-like creatures known as therapsids were actually more numerous than the ancestors of the dinosaurs, known as archosaurs.

"The dinosaurs definitely survived better than the early proto-mammals did, and the extinction event might have entirely tipped it in their favor," said Rutgers University paleobiologist George McGhee.

Of the Big Five, the Triassic-Jurassic extinction has the fewest number of scientists currently researching it, "although that's changing right now," said Columbia University paleoecologist Paul Olsen. Its cause remains under great debate, with the best contender so far being the massive volcanic eruptions at the "Central Atlantic magmatic province," a region that encompassed a staggering 4.2 million square miles (11 million square kilometers), an area larger than Canada. Another main possibility could be an astronomical impact, Olsen said, although as with the K-T event, the evidence for both types of catastrophe can get maddeningly blurry.


    * The Permian-Triassic extinction

The largest of the Big Five was the end-Permian or Permian-Triassic extinction event roughly 250 million years ago, which eliminated as much as 95 percent of the planet's species.

Before this extinction, marine animals were mostly filter feeders stuck in place on the seafloor, such as crinoids or "sea lilies." Afterward, the seas became far more complex with mobile creatures such as snails, urchins and crabs.

The most likely final trigger for the end-Permian was again massive volcanism, this time at the Siberian Traps, which spewed as much as 2.7 million square miles (7 million square kilometers) of lava out, an area nearly as large as Australia.

Recent evidence suggests, however, that the end-Permian may have been long in the making.

    * The late Devonian extinctions

The late Devonian extinction events were actually two sharp pulses of death about 360 million years ago, each just 100,000 to 300,000 years apart.

Each pulse was accompanied by a massive drop in temperature, with the steaming seas of the Devonian—surface temperatures of which were about 93 degrees F (34 degrees C)—dropping to about 78 degrees F (26 degrees C), "and marine organisms would not have liked that at all," McGhee said. As to what caused these cold snaps, the ever-popular suspects are ash and dust kicked up by either astronomical impacts or massive volcanism.

At that time, plants had made it onto land, as had spiders, scorpions and similar creatures. Right before the extinction events, the first proto-amphibians made it onto shore. However, the invasion of the so-called elpistostegalians—distant relatives of the coelacanth—"got wiped out by these extinction events," McGhee explained. "It wasn't until at least another 10 million years later that we got footprints from vertebrates on land again, this time from the ichthyostegalians, the proto-amphibians we're all descended from. Who knows how the world might have been different."

    * The Ordovician-Silurian extinctions

The earliest of the Big Five, the end-Ordovician or Ordovician-Silurian extinction events some 444 million years ago, are reckoned by many to be the second largest.

These also consisted of a pair of die-offs, apparently involving massive glaciation and a resulting fall in sea levels. The cause of this glaciation remains a mystery, but one idea was that land plants actually caused it, pulling so much carbon dioxide out of the atmosphere that global cooling resulted, McGhee explained.

Curiously, even though the end-Ordovician led to a huge loss of life, in a way it actually had very little impact on the persistence of lineages. Although the four other Big Five extinction events led to huge changes in which animals rose to prominence, the same animals that dominated before the end-Ordovician dominated afterward.

Otherwise, "one neat thing about mass extinction events is that they're often reset buttons, where you change what dominates the globe," Conrad said. "You open the door to things like us to live."

FULL MOON & ANIMAL BEHAVIOR

I know you're thinking of all those movies where under the light of a full moon, a man would transform into the Werewolf: a ferocious monster who would prowl the area searching for victims, ofcourse..
But thats not it.There are several other myths associated with LUNAR CYCLES.
The full moon has been linked to crime, suicide, mental illness, disasters, accidents, birthrates, fertility, and werewolves, among other things. Some people even buy and sell stocks according to phases of the moon..
The new study suggests that pets get into more mischief and are injured more often during certain phases of the lunar cycle, particularly when the moon is fullest.It revealed a link between an increase in emergency room visits for dogs and cats during days when the moon is at or near its fullest.

The data, compiled from case histories of 11,940 dogs and cats treated at the university's Veterinary Medical Center, indicates that the risk of emergencies on fuller moon days was 23 percent greater in cats and 28 percent greater in dogs when compared with other days. The types of emergencies ranged from cardiac arrest to epileptic seizures and trauma, and the increase was most pronounced during the moon's three fullest stages—waxing gibbous, full and waning gibbous.
Modern studies have associated the full Moon with insanity, traffic accidents, increased aggression, unintentional poisonings and absenteeism, and the female menstrual cycle, but many of the connections are thin and vary widely from study to study.

Historically there has been a widespread belief that a full moon can effect people and animals causing them to act strangely. In fact, the word ‘Lunatic’ came about due to the belief that the Moon can make one mad.
But just what is behind the pet emergency and full moon correlation, however, is not at all clear. One theory is that since there’s more light out, people and their pets may be more likely to be out getting into mischief. So, what does all this mean for pet owners?
Regarding HUMANS, Ivan Kelly, James Rotton and Roger Culver (1996) examined over 100 studies on lunar effects and concluded that the studies have failed to show a reliable and significant correlation between the full moon, or any other phase of the moon, and each of the following phases :

-the homicide rate
-traffic accidents
-crisis calls to police or fire stations
-domestic violence
-births of babies
-suicide
-major disasters
-casino payout rates
-assassinations
-kidnappings
-aggression by professional hockey players
-violence in prisons
-psychiatric admissions
-agitated behavior by nursing home residents
-assaults
-gunshot wounds
-stabbings
-emergency room admissions
-behavioral outbursts of psychologically challenged rural adults
-lycanthropy
-vampirism
-alcoholism
-sleep walking
-epilepsy
Why do so many people believe in these lunar myths these? Kelly, Rotton, and Culver suspect four factors: media effects, folklore and tradition, misconceptions, and cognitive biases. A fifth factor should be considered, as well: communal reinforcement.

DO ANIMALS USE LANGUAGE ??




Canines as wolves and coyotes may adopt an aggressive posture, such as growling with their teeth bared, to indicate they will fight if necessary, and rattlesnakes use their well-known rattle to warn potential predators of their poisonous bite ; and on a rainy night concert of a frog fills the darkness.. these are but few examples of the way animals communicate. Sounds of nature are all around us.Some are funny, while some threatening . Are they coded messages ? Is it possible that they are using a language ?

Language is defined as a form of symbolic and creative communication . Animals use communication to attract mates, warn off predators, mark territory,to exchange information about food sources and to identify themselves. The study of animal communication is called zoosemiotics .

The sender and receiver of a communication may be of the same species or of different species. The majority of animal communication is intra specific (between two or more individuals of the same species). However, there are some important instances of inter specific communication as warning colouration , mimicry , stotting, etc.

Some predators communicate to prey in ways that change their behaviour and make them easier to catch, in effect deceiving them.

Inter species communication also occurs in various kinds of mutualism and symbiosis.

Various ways in which humans interpret the behaviour of domestic animals, or give commands to them, fit the definition of inter specific communication.

Another important forms of communication is bird song, usually performed mainly by males. It is just the best known case of vocal communication; other instances include the warning cries of many monkeys, the territorial calls of gibbons, and the mating calls of many species of frog.

IMITATION OF HUMANS

I guess the most fascinating to us are the animals that can imitate our speech - as parrots.They are so good at imitation that every sound we say they are capable of repeating it .Could it be a genuine form of communication ?

A psychologist Irene Pepperberg has bee trying to answer this question.She started with with very simple words as cork and carrot and then started teaching a grey parrot simple sentences.Soon it could respond to questions as What colour is the box ?. Now the parrot has the ability to distinguish between more than 300 objects by form , size and colour.


FORMS OF ANIMALS COMMUNICATION


It has been observed that all animal communication can be divided into :
Visual / Optical Communication - such as patterns of fur, colour change or sign language.

Auditory / Acoustic Communication - animals make lots of different sounds to communicate, as singing shouting ,ultra- or infra- sound calls. From the roar of a lion to the song of the whale, sound is a way for animals to "talk" to other animals.

Tactile Communication - animals use touch in many different ways. When a cat rubs up against you or a dog offers you its paw, they are communicating. Chicks beg food from their parents using this form .

Chemical Communication - animals emit certain chemicals and odours from them conveys the message, many animals mark their paths and territories this way ,as dogs.

Electrical Communication - sometimes animals , esp. some fishes send electrical signals to improve orientation.

EXAMPLES FROM NATURE

These are some examples of animal communication :

Species such as wasps that are capable of harming potential predators are often brightly coloured, and this modifies the behaviour of the predator, who either instinctively or as the result of experience will avoid attacking such an animal.

Hover flies are coloured in the same way as wasps, and although they are unable to sting, the strong avoidance of wasps by predators gives the hover fly some protection.
This is an example of MIMICRY for protection.

In certain species of amphibians which have a brightly coloured belly, but on which the rest of their body is coloured to blend in with their surroundings. When confronted with a potential threat, they show their belly, indicating that they are poisonous in some way.

Some antelopes such as Thomson's gazelle in the presence of a predator run in a particular fashion , referred to as stotting ; it has been argued that this demonstrates to the predator that the particular prey individual is fit and healthy and therefore not worth pursuing.

The Herring Gull has a brightly coloured bill, yellow with a red spot on the lower mandible near the tip. When it returns to the nest with food, the parent stands over its chick and taps the bill on the ground in front of it; this elicits a begging response from a hungry chick (pecking at the red spot), which stimulates the parent to regurgitate food in front of it. The complete signal therefore involves a distinctive morphological feature (body part), the red-spotted bill, and a distinctive movement (tapping towards the ground) which makes the red spot highly visible to the chick.

However ,my favourite is the amazingly sophisticated communication that takes place among the honey-bees. When one of them discovers a source of food ,it returns to the hive and passes on the information.This is done by certain dances.Now here's the amazing part :If the food is located less than 100 m from the hive , the bee will dance around in a circle .If the distance is more , it becomes a waggling dance, in the form of figure of eight. The speed is supposed to indicate the distance of food. The orientation of the dance gives the direction of food.The bee through its dancing also reports the richness of the food to be found !!
The chief characteristic of animal communication is that every signal corresponds to only one message , and vice versa.To decide whether animals communicate by using language , scientists will have to decide the basic features of a language.

Fibonacci Numbers In Nature


The Fibonacci numbers are Nature's numbering system. They appear everywhere in Nature.

The sequence, in which each number is the sum of the two preceding numbers is known as the Fibonacci series: 1, 1, 2, 3, 5, 8, 13, 21, 34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 4181, ...

Fibonacci was known in his time and is still recognized today as the "greatest European mathematician of the middle ages."

He was born in the 1170's and died in the 1240's.He was one of the first people to introduce the Hindu-Arabic number system into Europe.

Fibonacci and Nature

Plants do not know about this sequence - they just grow in the most efficient ways. Many plants show the Fibonacci numbers in the arrangement of the leaves around the stem. Some pine cones and fir cones also show the numbers, as do daisies and sunflowers.


Why do these arrangements occur? In the case of leaf arrangement, or phyllotaxis, some of the cases may be related to maximizing the space for each leaf, or the average amount of light falling on each one. Even a tiny advantage would come to dominate, over many generations. In the case of close-packed leaves in cabbages and succulents the correct arrangement may be crucial for availability of space.


Petals on flowers


On many plants, the number of petals is a Fibonacci number:
buttercups have 5 petals; lilies and iris have 3 petals; some delphiniums have 8; corn marigolds have 13 petals; some asters have 21 whereas daisies can be found with 34, 55 or even 89 petals.

  • 3 petals: lily, iris
  • 5 petals: buttercup, wild rose, larkspur, columbine (aquilegia)
  • 8 petals: delphiniums
  • 13 petals: ragwort, corn marigold, cineraria,
  • 21 petals: aster, black-eyed susan, chicory
  • 34 petals: plantain, pyrethrum
  • 55, 89 petals: michaelmas daisies, the asteraceae family


Here is a passion flower (passiflora incarnata) from the back and front:



Back view


the 3 sepals that protected the bud are outermost,
then 5 outer green petals followed by an inner layer of 5 more paler green petals



Front view

the two sets of 5 green petals are outermost, with an array of purple-and-white stamens (how many?);in the centre are 5 greenish stamens (T-shaped) and uppermost in the centre are 3 deep brown carpels and style branches)


Vegetables and Fruit


Here is a picture of an ordinary cauliflower. Note how it is almost a pentagon in outline. Looking carefully, you can see a centre point, where the florets are smallest. Look again, and you will see the florets are organized in spirals around this centre in both directions.

Human Hand

Every human has two hands, each one of these has five fingers, each finger has three parts which are separated by two knuckles. All of these numbers fit into the sequence.

However keep in mind, this could simply be coincidence.








THE RIDDLE OF BLACK HOLES

The most mysterious objects in the universe must certainly be the invisible and inconceivably dense objects known as black holes.Nothing can escape its grip.But how can we be certain of their existence if we cannot see them??




To imagine a black hole, think of an abyss- small in size yet unimaginably dense- swallowing everything that comes within its reach.


Einstein's theory of general relativity, developed in 1916, explains BLACK HOLE as when large enough amount of mass is present within a small enough volume, all paths through space are
warped inwards towards the center of the volume. When an object is compressed enough for this to occur, collapse is unavoidable . When an object passes within the event horizon at the boundary of the black hole, it is lost forever .

  • INDICATIONS FOR EXISTENCE : INDIRECT TRACES

According to astrophysicists' calculations , the mass of all the matter in space is not sufficient to hold the distant stars. This has given rise to the idea that there is some invisible mass of matter that is capable of exerting sufficient force on all existing stars. It is possible that this force could be exerted by one or two gigantic black holes at the centre of the universe.

  • SIZES OF BLACK HOLES

Black holes can be of almost any mass. Super massive black holes containing millions to billions of times the mass of the sun, Intermediate-mass black holes, whose size is measured in thousands of
solar masses,Stellar-mass black holes have masses ranging from about 1.5-3.0 solar masses to 15 solar masses , or Micro black holes, which have masses much less than that of stars.

  • WHY IS BLACK HOLE INESCAPABLE ???


General relativity describes mass as changing the shape of space time, and the shape of space time as describing how matter moves through space. For objects much less dense than black holes,
this results in something similar to Newton's laws of gravity: objects with mass attract each other, but it's possible to define an escape velocity which allows a test object to leave the gravitational
field of any large object. For objects as dense as black holes, this stops being the case. The effort required to leave the hole becomes infinite, with no escape velocity defined.

  • BLACK HOLES AND EARTH
Black holes are possibly the most serious potential threats to Earth and humanity,as a naturally-produced black hole could pass through our Solar System , and a large particle accelerator might
produce a micro black hole, and if this escaped it could gradually eat the whole of the Earth.



THE BIG BANG



The Big Bang Theory is the dominant scientific theory about the origin of the universe. According to the big bang, the universe was created from a tremendously dense and hot state, sometime between 10 billion and 20 billion years ago from a cosmic explosion that hurled matter and in all directions.


The theory is based on the mathematical equations, known as the field equations, of the general theory of relativity set forth in 1915 by Albert Einstein.



The Big Bang theory developed from observations of the structure of the universe and from theoretical considerations. Observers determined that most "spiral nebulae" were receding from Earth, but did not grasp the cosmological implications of this fact, or realize that the supposed nebulae were galaxies outside our Milky Way.

In 1927, the Belgian priest Georges Lemaître was the first to propose that the universe began with the explosion of a primeval atom. His proposal came after observing the red shift in distant nebulas by astronomers to a model of the universe based on relativity. Years later, Edwin Hubble in 1929 found experimental evidence to help justify Lemaître's theory. He found that distant galaxies in every direction are going away from us with speeds proportional to their distance.

However, the universe's initial state was still unknown.
Two distinct possibilities emerged. One was Fred Hoyle's steady state model, whereby new matter would be created as the universe seemed to expand. In this model, the universe is roughly the same at any point in time. The other was Lemaître's Big Bang theory, advocated and developed by George Gamow. Hoyle actually coined the name of Lemaître's theory, referring to it sarcastically as "this big bang idea" during a program broadcast on March 28, 1949, by the BBC Third Programme. Hoyle repeated the term in further broadcasts in early 1950, as part of a series of five lectures entitled The Nature of Things. The text of each lecture was published in The Listener a week after the broadcast, the first time that the term "big bang" appeared in print.

While Hoyle's "steady state" and Lemaître's "Big Bang" were the two most popular models used to explain Hubble's observations, other ideas were also proposed, including the Milne model, Richard Tolman's oscillatory universe,and Fritz Zwicky's tired light hypothesis.

The big bang was initially suggested because it explains why distant galaxies are traveling away from us at great speeds. The theory also predicts the existence of cosmic background radiation (the glow left over from the explosion itself). The Big Bang Theory received its strongest confirmation when this radiation was discovered in 1964 by Arno Penzias and Robert Wilson, who later won the Nobel Prize for this discovery.

Although the Big Bang Theory is widely accepted, it probably will never be proved; consequentially, leaving a number of tough, unanswered questions.





Huge advances in Big Bang cosmology have been made since the late 1990s as a result of major advances in telescope technology as well as copious data from satellites such as COBE, the Hubble Space Telescope, and WMAP. Cosmologists can now calculate many of the parameters of the Big Bang to a new level of precision, leading to the unexpected discovery that the expansion of the universe appears to be accelerating.

The Big Bang, a scientific theory, is not based on any religion. Some people have found similarities, however, that they believe have both theological and philosophical implications, since some religious interpretations and world views conflict with the Big Bang origin of the universe.
Some interpretations of the Big Bang theory go beyond science, and some purport to explain the cause of the Big Bang itself (first cause). These views have been criticized by some naturalist philosophers as being modern creation myths. Some people believe that the Big Bang theory is inconsistent with traditional views of creation such as that in Genesis, for example, while others, like astronomer Hugh Ross, believe that the Big Bang theory lends support to the idea of creation ex nihilo



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This blog is a comprehensive collection of lost civilizations, ancient ruins, sacred writings, unexplained artifacts, unexplained phenomena, science mysteries and historical oddities ranging from Big Bang and Killer comets to poltergeist and alien abductions.