Wednesday, 20 January 2016

RRB Recruitment 2016: 18000+ Assistant Station Master, Goods Guard, Commercial/ Traffic Apprentice, Clerk Vacancies


Indian Railways RRBs Recruitment 2016 RRB CEN 03/2015 Notification- 

Railway Recruitment Boards, Ministry of Railways, Government of India, invites online applications from eligible candidates for Non Technical Popular Categories (Graduate) Posts. [Assistant Station Master, Goods Guard, Commercial Apprentice, Traffic Apprentice, Enquiry-cum-Reservation Clerk, Junior Accounts Assistant-cum-Typist, Senior Clerk-cum-Typist, Traffic Assistant, and Senior Time Keeper] of Various Zonal Railways/ Production Units on Indian Railways.

Candidates will be selected on the basis of Single Stage Computer Based Test, followed by document verification. Candidates competing for clerical categories have to pass a qualifying typewriting examination in Hindi or English. Preliminary Examination will be held on the same day by all participating RRBs.

Name of the Post and Number of Vacancies Advertised:

Goods Guard- 7591 vacancies
Commercial Apprentice- 703 vacancies
Traffic Apprentice- 1645 vacancies
Traffic Assistant- 166 vacancies
Assistant Station Master- 5942 vacancies
Junior Accounts Assistant-cum-Typist- 1205 vacancies
Enquiry-cum-Reservation Clerk- 127 vacancies
Senior Clerk-cum-Typist- 869 vacancies
Senior Time Keeper- 04 vacancies

Indian Railway Zone wise Vacancies: 

Railway Recruitment Board RRB Ahmedabad: 1183 Posts
Railway Recruitment Board RRB Ajmer: 1088 Posts
Railway Recruitment Board RRB Allahabad: 2864 Posts
Railway Recruitment Board RRB Bangalore: 610 Posts
Railway Recruitment Board RRB Bhopal: 1151 Posts
Railway Recruitment Board RRB Bhubaneswar: 770 Posts
Railway Recruitment Board RRB Bilaspur: 302 Posts
Railway Recruitment Board RRB Chandigarh: 304 Posts
Railway Recruitment Board RRB Chennai: 976 Posts
Railway Recruitment Board RRB Gorakhpur: 317 Posts
Railway Recruitment Board RRB Guwahati: 409 Posts
Railway Recruitment Board RRB Jammu-Srinagar: 171 Posts
Railway Recruitment Board RRB Kolkata: 1408 Posts
Railway Recruitment Board RRB Malda: 278 Posts
Railway Recruitment Board RRB Mumbai: 2296 Posts
Railway Recruitment Board RRB Muzaffarpur: 464 Posts
Railway Recruitment Board RRB Patna: 714 Posts
Railway Recruitment Board RRB Ranchi: 562 Posts
Railway Recruitment Board RRB Secunderabad: 1618 Posts
Railway Recruitment Board RRB Siliguri: 279 Posts
Railway Recruitment Board RRB Thiruvananthapuram: 488 Posts
Educational Qualification: Candidates must be Degree from recognized University or equivalent.

Age Limit: Minimum 18 years and Maximum 33 years as on 01-January-2016. Relaxation in upper age limit as per central government rules.



Pay Scale:

Assistant Station Master, Goods Guard, Enquiry-Cum-Reservation Clerk, Junior Accounts Assistant-cum-Typist, Senior Clerk-Cum-Typist, Senior Time Keeper: Rs.5200-20200/- plus Grade Pay Rs.2800/-
Commercial Apprentice, Traffic Apprentice: Rs.9300-34800/- + Grade Pay Rs.4200/-
Traffic Assistant : Rs.5200-20200/- + Grade Pay Rs.2000/-

Most Important Dates:

Date of Publication of Notification: 26-December-2015
Last Date for Online Submission of Application: 25-January-2016
Common Computer Based Test: March-May, 2016

Application Fee: Rs. 100/-

SC/ ST/ Women/ Ex-servicemen/ Minorities/ Transgender/ PWD candidates are exempted from payment of application fees.

Candidate are suggested to pay the application fees through online mode that is payment gateway (Debit card/ Credit card/ Net banking) or Offline mode through SBI branch or any computerised post office after downloading a pre printed Challan/ Pay-in-Slip.

How to Apply: Online Mode Only

Interested candidates are suggested to apply Online through official website of Railway Recruitment Boards. Interested and eligible candidates can apply for a particular post to any one RRB only through ONLINE application mode by visiting the website of concerned RRB. For complete information on this recruitment, please visit official advertisement here
https://drive.google.com/drive/folders/0B_u9j_raJmXxYUNKRTNaaUljWXM

Saturday, 16 January 2016

Wonder of World : The Great Pyramid of Giza

Seven Quick Facts

Location: Giza, Egypt
Built: Around 2560 BC
Function: Tomb of Pharoah Khufu
Destroyed: Still stands today.
Size: Height 480 ft. (146m)
Made of: Mostly limestone
Other: Tallest building in the world till 1311 AD and again from 1647 to 1874.


It's 756 feet long on each side, 450 feet high and is composed of 2,300,000 blocks of stone, each averaging 2 1/2 tons in weight. Despite the makers' limited surveying tools, no side is more than 8 inches different in length than another, and the whole structure is perfectly oriented to the points of the compass. Even in the 19th century, it was the tallest building in the world and, at the age of 4,500 years, it is the only one of the famous "Seven Wonders of the Ancient World" that still stands. Even today it remains the most massive building on Earth. It is the Great Pyramid of Khufu, at Giza, Egypt.

Some of the earliest history of the Pyramid comes from a Greek the historian and traveler Herodotus of Halicanassus. He visited Egypt around 450 BC and included a description of the Great Pyramid in a history book he wrote. Herodotus was told by his Egyptian guides that it took twenty years for a force of 100,000 oppressed slaves to build the pyramid (with another 10 years to build a stone causeway that connected it to a temple in the valley below). Stones were lifted into position by the use of immense machines. The purpose of the structure, according to Herodotus's sources, was as a tomb for the Pharaoh Khufu (whom the Greeks referred to as Cheops).

Herodotus, a Greek from the democratic city of Athens, probably found the idea of a single man employing such staggering wealth and effort on his tomb an incredible act of egotism. He reported that even thousands of years later the Egyptians still hated Khufu for the burden he had placed on the people and could hardly bring themselves to speak his name.


However, Khufu's contemporary Egyptian subjects may have seen the great pyramid in a different light. To them the pharaoh was not just a king, but a living god who linked their lives with those of the immortals. The pyramid, as an eternal tomb for the pharaoh's body, may have offered the people reassurance of his continuing influence with the gods. The pyramid wasn't just a symbol of regal power, but a visible link between earth and heaven.

Indeed, many of the stories Herodotus relates to us are probably false. Engineers calculate that fewer men and less years were needed than Herodotus suggests to build the structure. It also seems unlikely that slaves or complicated machines were needed for the pyramid's construction. It isn't surprising that the Greek historian got it wrong, however. By the time he visited the site, the structure was already 20 centuries old, and much of the truth about it was shrouded in the mists of history.

Certainly the idea that it was a tomb for a Pharaoh, though, seems in line with Egyptian practices. For many centuries before and after the construction of the Great Pyramid, the Egyptians had interned their dead Pharaoh-Kings, whom they believed to be living Gods, in intricate tombs. Some were above-ground structures, like the pyramid, others were cut in the rock underground. All the dead leaders were outfitted with the many things it was believed they would need in the afterlife to come. Many were buried with untold treasures.

The Pyramid Complex


If we were to visit the location of the great pyramid when it was just finished, it would look very different than we see it today. Originally, the pyramid itself was encased in highly polished white limestone with a smooth surface which is now gone. At the very top of the structure would have been a capstone, which is also now missing. Some sources suggest that the capstone might have been sheathed in gold. Between the white limestone and the golden cap the pyramid would have made an impressive sight shining in the bright Egyptian sun.

Around the base of the great pyramid were four smaller pyramids, three of which still stand today. On the east side of the pyramid stood a now missing Funerary temple. Running down the hill into the valley was a stone causeway, which linked the Funerary temple with a temple in the valley. Around the pyramid were six boat shaped pits that may have contained the hulls of vessels that belonged to the pharaoh. Parts of one of these have been found and reconstructed into a 147 foot long boat that today is enclosed next to the pyramid in its own museum.

The other two large pyramids at Giza, the Pyramid of Khafre (Khufu's son) and the Pyramid of Menkaure had not yet been built, so the Khufu's pyramid and its associated structures stood alone, though surrounded by the dwelling places and the graves of many of those that helped construct it.

Opening the Pyramid


Even in ancient times, thieves breaking into the sacred burial places were a major problem and Egyptian architects became adept at designing solutions to this problem. They built passageways that could be plugged with impassable granite blocks; created secret, hidden rooms and made decoy chambers. No matter how clever the designers became, however, robbers seemed to be even smarter and with almost no exceptions, each of the great tombs of the Egyptian Kings was plundered.

In 820 A.D. the Arab Caliph Abdullah Al Manum decided to make his own search for the treasure of Khufu. He gathered a gang of workmen and, unable to find the location of a reputed secret door, started burrowing into the side of the monument. After a hundred feet of hard going they were about to give up when they heard a heavy thud echo through the interior of the pyramid. Digging in the direction of the sound, they soon came upon a passageway that descended into the heart of the structure. On the floor lay a large block that had fallen from the ceiling, apparently causing the noise they had heard. Back at the beginning of the corridor they found the secret hinged door to the outside they had missed.

Working their way down the passage they soon found themselves deep in the natural stone below the pyramid. The corridor stopped descending and went horizontal for about 50 feet, then ended in a blank wall. A pit extended downward from there for about 30 feet, but it was empty. When the workmen examined the fallen block they noticed a large granite plug above it. Cutting through the softer stone around it they found another passageway that extended up into the heart of the pyramid. As they followed this corridor upward, they found several more granite blocks closing off the tunnel. In each case they cut around them by burrowing through the softer limestone of the walls. Finally, they found themselves in a low, horizontal passage that led to a small, square, empty room. This became known as the "Queen's Chamber," though it seems unlikely that it ever served that function.

Back at the junction of the ascending and descending passageways, the workers noticed an open space in the ceiling. Climbing up they found themselves in a high-roofed, ascending passageway. This became known as the "Grand Gallery." At the top of the gallery was a low, horizontal passage that led to a large room, some 34 feet long, 17 feet wide, and 19 feet high. It became known as the "King's Chamber." In the center was a huge granite sarcophagus without a lid. Otherwise the room was completely empty.

The Missing Treasure


The Arabs, as if in revenge for the missing treasure, stripped the pyramid of its fine white limestone casing and used it for building in Cairo. They even attempted to disassemble the great pyramid itself, but after removing the top 30 feet of stone, they gave up on this impossible task.

So what happened to the treasure of King Khufu? Conventional wisdom says that, like so many other royal tombs, the pyramid was the victim of robbers in ancient times. If we believe the accounts of Manum's men, though, the granite plugs that blocked the passageways were still in place when they entered the tomb. How did the thieves get in and out?

In 1638 an English mathematician, John Greaves, visited the pyramid. He discovered a narrow shaft, hidden in the wall that connected the Grand Gallery with the descending passage. Both ends were tightly sealed and the bottom was blocked with debris. Some archaeologists have suggested this route was used by the last of the Pharaoh's men to exit the tomb after the granite plugs had been put in place and by the thieves to get inside. Given the small size of the passageway and the amount of debris it seems unlikely that the massive amount of treasure, including the huge missing sarcophagus lid, could have been removed this way, however.

Construction


Scientists have long argued about how this massive structure was built, but the most likely theory seems to be that the Egyptians built a huge ramp that allowed them to drag the blocks into position. Because a single straight ramp (as seen in the recent movie 10,000B.C.) would have to be over a half mile long to reach the top and would need to contain as much material as the pyramid itself, engineers have suggested that the ramp was in the shape of a spiral running around the outside of the pyramid. Alternately the Egyptians may have combined a straight ramp that ran part way up the pyramid with a spiral ramp to the very top levels. Blocks were probably dragged up the ramp by a team of men and put into their final position through the use of levers (For more information on the construction of the Great Pyramid, see our page How to Build a Pyramid).

French architect Jean-Pierre Houdin advanced the theory that a spiral ramp was used on the inside of the pyramid to move the stone blocks. According to Houdin a straight external ramp was used to get materials to the 140 foot level. From there workers dragged the stones through a set of gently rising tunnels just inside the outer walls. The last tunnel would exit on the monument's top. A 1986 microgravity survey of the pyramid discovered a peculiar anomaly: a less-dense structure in the form of a spiral within the pyramid that may turn out to be what is left of Houdin's tunnels.

A project management group that studied the problem of building the Great Pyramid estimated that the project, using material and methods available at the time, might have required less than ten years to complete: Two or three years site preparation, five years of actual construction and two years to remove the ramps and put on the finishing touches. This could have been done with an average work force of less than 14,000 laborers and a peak force of 40,000. By examining the ruins of dwellings and workshops in the area, archeologists have estimated between 4,000 and 5,000 of these men were full-time workers committed to the project through most of the construction.

Egyptian records indicate that the laborers, while being drafted against their will, were actually well cared for by ancient standards. Regulations have been found covering the maximum amount of work allowed per day, the wages received and holidays each worker was entitled to. Also, by scheduling most of the work to be done during annual flood periods, the Pharaoh could get a lot done without impacting the normal Egyptian economy.

Was the Pyramid a Tomb?


Some have suggested that the pyramid was never meant as a tomb, but as an astronomical observatory. The Roman author Proclus, in fact, states that before the pyramid was completed it did serve in this function. We can't put too much weight on Proclus words, though, remembering that when he advanced his theory the pyramid was already over 2000 years old.

Richard Proctor, an astronomer, did observe that the descending passage could have been used to observe the transits of certain stars. He also suggested that the grand gallery, when open at the top during construction, could have been used for mapping the sky.

Many strange (and some silly) theories have arisen over the years to explain the pyramid and its passageways. Most archaeologists, however, accept the theory that the great pyramid was just the largest of a tradition of tombs used for the Pharaohs of Egypt.

So what happened to Khufu's mummy and treasure? Nobody knows. Extensive explorations have found no other chambers or passageways. Still one must wonder if, perhaps in this one case, the King and his architects outsmarted both the ancient thieves and modern archaeologists and that somewhere in, or below, the last wonder of the ancient world, rests Khufu and his sacred gold.

Monday, 11 January 2016

The Great Scientist Einstein on his 72nd Birthday


In honor of Einstein’s 72nd birthday, friends and colleagues met at the Princeton Club for a celebration heavy on both merriment and press photographers. Eager cameraman Arthur Sasse tried to coax one final smile from the physicist as he departed for the night; worn down by the festivities, Einstein stuck out his tongue instead. The photo has since become a cultural icon, which Einstein himself liked so much that he ordered nine prints made, and used it to adorn greeting cards.

Rajasthan PSC Senior Teacher vacancy last date 21st Feb-2016


Recruitment of Sr. Teacher (Special Education) in Schools  Examination 2015 


RPSC invites Online application for the following  posts of Lecturer / Teachers School Education   in various Government Schools in Rajasthan :

Sr. Teacher (Sr. Secondary Schools) (Special Education) : 211 posts in various subjects, Age : 21-35 years, Pay Scale : Rs. 9300 - 34800 grade pay Rs. 4200/-

How to Apply : Apply Online at RPSC website from 12/01/2016 to 21/02/2016 only.  

Information : For complete information, please visit http://rpsc.rajasthan.gov.in/RecruitmentAds.aspx
 and  apply online at http://rpsc.rajasthan.gov.in

Sunday, 3 January 2016

Human Anatomy : Digestive System

Digestive System

The digestive system is a group of organs working together to convert food into energy and basic nutrients to feed the entire body. Food passes through a long tube inside the body known as the alimentary canal or the gastrointestinal tract (GI tract). The alimentary canal is made up of the oral cavity, pharynx, esophagus, stomach, small intestines, and large intestines. In addition to the alimentary canal, there are several important accessory organs that help your body to digest food but do not have food pass through them. Accessory organs of the digestive system include the teeth, tongue, salivary glands, liver, gallbladder, and pancreas. To achieve the goal of providing energy and nutrients to the body, six major functions take place in the digestive system:

Ingestion
Secretion
Mixing and movement
Digestion
Absorption
Excretion

Digestive System Anatomy


Mouth

Food begins its journey through the digestive system in the mouth, also known as the oral cavity. Inside the mouth are many accessory organs that aid in the digestion of food—the tongue, teeth, and salivary glands. Teeth chop food into small pieces, which are moistened by saliva before the tongue and other muscles push the food into the pharynx.

Teeth.
The teeth are 32 small, hard organs found along the anterior and lateral edges of the mouth. Each tooth is made of a bone-like substance called dentin and covered in a layer of enamel—the hardest substance in the body. Teeth are living organs and contain blood vessels and nerves under the dentin in a soft region known as the pulp. The teeth are designed for cutting and grinding food into smaller pieces.

Tongue.
The tongue is located on the inferior portion of the mouth just posterior and medial to the teeth. It is a small organ made up of several pairs of muscles covered in a thin, bumpy, skin-like layer. The outside of the tongue contains many rough papillae for gripping food as it is moved by the tongue’s muscles. The taste buds on the surface of the tongue detect taste molecules in food and connect to nerves in the tongue to send taste information to the brain. The tongue also helps to push food toward the posterior part of the mouth for swallowing.

Salivary Glands.
Surrounding the mouth are 3 sets of salivary glands. The salivary glands are accessory organs that produce a watery secretion known as saliva. Saliva helps to moisten food and begins the digestion of carbohydrates. The body also uses saliva to lubricate food as it passes through the mouth, pharynx, and esophagus.

Pharynx

The pharynx, or throat, is a funnel-shaped tube connected to the posterior end of the mouth. The pharynx is responsible for the passing of masses of chewed food from the mouth to the esophagus. The pharynx also plays an important role in the respiratory system, as air from the nasal cavity passes through the pharynx on its way to the larynx and eventually the lungs. Because the pharynx serves two different functions, it contains a flap of tissue known as the epiglottis that acts as a switch to route food to the esophagus and air to the larynx.

Esophagus
The esophagus is a muscular tube connecting the pharynx to the stomach that is part of the upper gastrointestinal tract. It carries swallowed masses of chewed food along its length. At the inferior end of the esophagus is a muscular ring called the loweresophageal sphincter or cardiac sphincter. The function of this sphincter is to close of the end of the esophagus and trap food in the stomach.

Stomach
The stomach is a muscular sac that is located on the left side of the abdominal cavity, just inferior to the diaphragm. In an average person, the stomach is about the size of their two fists placed next to each other. This major organ acts as a storage tank for food so that the body has time to digest large meals properly. The stomach also contains hydrochloric acid and digestive enzymes that continue the digestion of food that began in the mouth.

Small Intestine
The small intestine is a long, thin tube about 1 inch in diameter and about 10 feet long that is part of the lower gastrointestinal tract. It is located just inferior to the stomach and takes up most of the space in the abdominal cavity. The entire small intestine is coiled like a hose and the inside surface is full of many ridges and folds. These folds are used to maximize the digestion of food and absorption of nutrients. By the time food leaves the small intestine, around 90% of all nutrients have been extracted from the food that entered it.

Liver and Gallbladder
The liver is a roughly triangular accessory organ of the digestive system located to the right of the stomach, just inferior to the diaphragm and superior to the small intestine. The liver weighs about 3 pounds and is the second largest organ in the body. The liver has many different functions in the body, but the main function of the liver in digestion is the production of bile and its secretion into the small intestine. The gallbladder is a small, pear-shaped organ located just posterior to the liver. The gallbladder is used to store and recycle excess bile from the small intestine so that it can be reused for the digestion of subsequent meals.

Pancreas
The pancreas is a large gland located just inferior and posterior to the stomach. It is about 6 inches long and shaped like short, lumpy snake with its “head” connected to the duodenum and its “tail” pointing to the left wall of the abdominal cavity. The pancreas secretes digestive enzymes into the small intestine to complete the chemical digestion of foods.

Large Intestine
The large intestine is a long, thick tube about 2 ½ inches in diameter and about 5 feet long. It is located just inferior to the stomach and wraps around the superior and lateral border of the small intestine. The large intestine absorbs water and contains many symbiotic bacteria that aid in the breaking down of wastes to extract some small amounts of nutrients. Feces in the large intestine exit the body through the anal canal.

Digestive System Physiology


The digestive system is responsible for taking whole foods and turning them into energy and nutrients to allow the body to function, grow, and repair itself. The six primary processes of the digestive system include:

Ingestion of food
Secretion of fluids and digestive enzymes
Mixing and movement of food and wastes through the body
Digestion of food into smaller pieces
Absorption of nutrients
Excretion of wastes

Ingestion

The first function of the digestive system is ingestion, or the intake of food. The mouth is responsible for this function, as it is the orifice through which all food enters the body. The mouth and stomach are also responsible for the storage of food as it is waiting to be digested. This storage capacity allows the body to eat only a few times each day and to ingest more food than it can process at one time.

Secretion

In the course of a day, the digestive system secretes around 7 liters of fluids. These fluids include saliva, mucus, hydrochloric acid, enzymes, and bile. Saliva moistens dry food and contains salivary amylase, a digestive enzyme that begins the digestion of carbohydrates. Mucus serves as a protective barrier and lubricant inside of the GI tract. Hydrochloric acid helps to digest food chemically and protects the body by killing bacteria present in our food. Enzymes are like tiny biochemical machines that disassemble large macromolecules like proteins, carbohydrates, and lipids into their smaller components. Finally, bile is used to emulsify large masses of lipids into tiny globules for easy digestion.

Mixing and Movement

The digestive system uses 3 main processes to move and mix food:

Swallowing. Swallowing is the process of using smooth and skeletal muscles in the mouth, tongue, and pharynx to push food out of the mouth, through the pharynx, and into the esophagus.

Peristalsis. Peristalsis is a muscular wave that travels the length of the GI tract, moving partially digested food a short distance down the tract. It takes many waves of peristalsis for food to travel from the esophagus, through the stomach and intestines, and reach the end of the GI tract.

Segmentation. Segmentation occurs only in the small intestine as short segments of intestine contract like hands squeezing a toothpaste tube. Segmentation helps to increase the absorption of nutrients by mixing food and increasing its contact with the walls of the intestine.

Digestion

Digestion is the process of turning large pieces of food into its component chemicals. Mechanical digestion is the physical breakdown of large pieces of food into smaller pieces. This mode of digestion begins with the chewing of food by the teeth and is continued through the muscular mixing of food by the stomach and intestines. Bile produced by the liver is also used to mechanically break fats into smaller globules. While food is being mechanically digested it is also being chemically digested as larger and more complex molecules are being broken down into smaller molecules that are easier to absorb. Chemical digestion begins in the mouth with salivary amylase in saliva splitting complex carbohydrates into simple carbohydrates. The enzymes and acid in the stomach continue chemical digestion, but the bulk of chemical digestion takes place in the small intestine thanks to the action of the pancreas. The pancreas secretes an incredibly strong digestive cocktail known as pancreatic juice, which is capable of digesting lipids, carbohydrates, proteins and nucleic acids. By the time food has left the duodenum, it has been reduced to its chemical building blocks—fatty acids, amino acids, monosaccharides, and nucleotides.

Absorption

Once food has been reduced to its building blocks, it is ready for the body to absorb. Absorption begins in the stomach with simple molecules like water and alcohol being absorbed directly into the bloodstream. Most absorption takes place in the walls of the small intestine, which are densely folded to maximize the surface area in contact with digested food. Small blood and lymphatic vessels in the intestinal wall pick up the molecules and carry them to the rest of the body. The large intestine is also involved in the absorption of water and vitamins B and K before feces leave the body.

Excretion
The final function of the digestive system is the excretion of waste in a process known as defecation. Defecation removes indigestible substances from the body so that they do not accumulate inside the gut. The timing of defecation is controlled voluntarily by the conscious part of the brain, but must be accomplished on a regular basis to prevent a backup of indigestible materials.



Wednesday, 30 December 2015

Punjab PSC Lecturer Technical Education vacancy last date 20th Jan-2016

Punjab Public Service Commission (PPSC)
Baradari Garden, P.B. No. 39, Patiala - 147001, Punjab.

The Punjab Public Service Commission invites application through Online  Application Forms from eligible candidates for recruitment to the following Posts  in Department of Technical Education and Industrial Training,  Government of Punjab in various Government Polytechnics :

Lecturer (Technical Education) : 225 posts, Pay Scales : Rs. 15600-39100 Grade Pay Rs.5400,
Age :  37 years as on 01/01/2016.

How to Apply :  Apply Online at Punjab PSC website on or before 20/01/2016 only.

For more information and Online application form, please visit