Sunday, October 6, 2019

Platos Allegory of the Cave Essay Example | Topics and Well Written Essays - 1250 words

Platos Allegory of the Cave - Essay Example The prisoners come up with a guessing game on what the images they see on the wall could be. The one who gets his guess right on what the next object to appear is gets praised by his fellow prisoners and is viewed as a master of nature, even though none of these things they guess have they seen or known.Plato finds a problem with this kind of knowledge where people believe in truth in things they have even not seen or experienced. Plato has his own view of how people should perceive and arrive at truth in their daily encounters in life. The first perception is: sensory perception. This entails the world as it appears, how we see it, feel it using our senses. The second kind of perception is spiritual perception. This comes about after we ignore the sensory perception and set out to seek deeper insight on the basic knowledge we have (Herman 2013). This previous perception happens to be Plato’s ideal philosophy of all time and the ideal kind of concept.Aristotle’s rhetori c can best be defined as the art of observing the necessary cause of persuasion in any given situation. According to Aristotle’s Rhetoric, he finds it okay for people to talk about things (ideal) they envision or have heard about as though they were actually in touch with them (Rorty, 1996). In his view this believe in the vision would bring them even closer to these ideal. Aristotle believed that human beings had the ability to look at how communications happen around them and deduce meaning and come up with convincing arguments.

Saturday, October 5, 2019

Implementation, Strategic Controls, and Contingency Plans Essay - 2

Implementation, Strategic Controls, and Contingency Plans - Essay Example It is due to this reason I choose to venture in the education sector but in a different venture. The business venture is the Online State of the Art Educational Portal. The venture can also be referred to in personal state of the art educational portal. With parents with the thirst of interactive education for their children this venture aims to prove a quench of that. This approach is unique and provides the best quality form of education. To add to its advantages, the approach involves the integration of parents who outline the weaknesses and strengths of a child. Additionally, the approach a rectangular circulation and interaction of tasks. It provides a child-parent-teacher interaction basis. This mode of interaction lacks in most educational systems. With current trends taking over in the society, parents need to be part and parcel of their children growth and this approach provides the best medium of interaction. The implementation of this approach however must come with its shortcomings. It is this logic assumption that makes it possible to have a business environmental analysis. Both the internal and external environment factors can affect this venture. With the environmental analysis, there is a clear picture of shortcomings and the possible ways to dealing with them (De Wit, 2003). Apart from the external environmental analysis there is the need for a SWOT analysis. The SWOT analysis provides the entrepreneur with a picture of their strength and weaknesses. It is satisfied by one maximizing on their strengths and avoiding and dealing with their weaknesses. Additionally, the analysis tends to provide warning to an organization on which parts to cushion to prevent heavy losses caused by misfortunes. External environmental factors are factors which are not in the capacity of the institution to deal with. However, they must be considered since they affect the operations of the institutions.

Friday, October 4, 2019

Turbines Case Essay Example for Free

Turbines Case Essay Definition and historical background Claude Burdin (1788–1873) was the very first person to use the word turbine. The word came from the Latin term turbo/turbines, which means a â€Å"whirling† or a â€Å"vortex.† Burdin used the term to describe the subject matter of an engineering competition being held during that time for a water power source. It would be an oversimplification to describe turbine as a rotating machine that is used to derive power or electricity from the water; a common water wheel may not immediately or necessarily be a turbine, but it definitely is a rotating machine. A more precise definition of a turbine is that it is a machine â€Å"in which the water moves relatively to the surfaces of the machine, as distinguished from machines in which such motion is secondary, as with a cylinder and piston† (Daugherty and Franzini 1965, 213–214). More broadly, to include other types of turbine, it is one of those devices or machines that is being used to channel or convert energy from a stream of fluid (liquid or gas) into mechanical energy which would eventually be used to generate electrical energy, or to support or augment another utility/device. This is done as the stream passes through a system of fixed and moving fanlike blades which causes the latter to rotate. This device (turbine) looks like a large (and sometimes small) wheel with small radiating blades around its rim. The four general classes of turbines are water or hydraulic, wind, steam, and gas turbines. Water or hydraulic, wind, and steam turbines are generally used for the generation of electricity; while the remaining one, gas turbines, is mostly being used in aircrafts (Britannica Concise Encyclopedia 2006). The principal components of simple turbines are the rotor, which in most if not all cases has blades projecting radially from the center to its periphery; the nozzles, where the working jet of fluid is directed and expanded; and blades, where the conversion of kinetic to mechanical energy takes place. Theoretical and operating principles Potential and kinetic energy both exist in a working fluid, which could be compressible or incompressible. Turbines collect this available energy by utilizing any or both of these physical principles: impulse turbines and reaction turbines. Impulse turbines change the direction of flow of a given high velocity fluid jet. The impulse, as a result of this, causes the turbine to spin or rotate, diminishing the kinetic energy of the fluid flow as this is absorbed by the device. In the case of flowing water, it comes available in purely mechanical form (water in nature is one of the most useful and efficient sources of kinetic energy). Scientific calculations show that 1 cubic meter of water can actually produce 9.8 kilojoules of pure mechanical energy for every meter that the volume of water descends. In the same way, a flow of the same volume of water for every second in a fall of 1 meter can provide 9.8 kilowatts, or 13 horsepower. Hydraulic turbines efficiency is estimated at approximately 1, meaning, almost all energy is available or utilized. This kinetic/mechanical energy can be converted to electrical energy with an efficiency of more than 95.0% (Calvert 2004). To get this much power from water, it should be extracted as it is lowered in elevation. The current in a stream, of course, is obvious. This flow comes from the open-channel movement or flow of water as influenced by gravitational forces. Simply put, holding a paddle-wheel in the stream of water will result to the paddle-wheel being rotated and from this outcome, power can be extracted (mechanical energy or electrical energy). This is an example of elementary impulse turbine, a machine acted upon by the impulse or force of moving or flowing water (Calvert 2004). In the case of reaction turbines, torque is developed as a result of fluids pressure or weight. The fluids pressure changes as it goes through the rotor blades of the turbine. There should be a pressure casement so as to contain and maintain the energy of the working fluid as it acts on the turbine stage(s). If there would be no pressure casement, the turbine must be immersed in the fluid flow, such as in the case of wind turbines. It is the casing that directs and contains the working fluid. In the case of water turbines, it maintains the suction which is imparted by the draft tube (Calvert 2004). A simple but very good example for this principle is the lawn sprinkler. In contrast to the impulse turbine, where the pressure change took place in the nozzle, the pressure change in reaction turbines occurs in the runner itself. This happens at the time that the force is exerted, hence, a reaction. Looking at the example of sprinkler, its duty is to spread water coming from it; the resulting energy from the turbine serves to move (rotate) the sprinkler head. Water flows from the center of the sprinkler going radially outward. Water under pressure comes from the center, and then jets of water that can possibly cover the area go out to the ends of the arms of the sprinkler at zero gauge pressure. The significant decrease in pressure takes place in the sprinklers arms. The water is projected at a certain angle to the radius, but it should be noted that the water from a working sprinkler actually moves along a defined radius. The jets of water do not impinge on a runner; but rather, they leave the runner, and this momentum is not converted into force, as opposed to an impulse turbine. The force residing on the runner reacts to the creation of the momentum, hence, the principle itself, reaction turbine (Calvert 2004). In any case, there is no restriction, as far as laws of physics are concerned, for any machine to utilize both principles. Many machines or devices use both of these principles as it is more efficient for the machine to be that way. Different kinds of turbines There are different kinds of turbines used in modern period: the water or hydraulic, steam, gas, and wind turbines. There are other types but these four are the most common and are usually the bases of any other turbines. Hydroelectric power stations utilize water, or hydraulic, turbine to drive their electric generators. Wisconsin, in 1882, witnessed the first of this kind of turbines. The processes taking place in a hydraulic turbine is simple: falling water hits a set of buckets or blades connected to a shaft. This impact will cause the shaft to rotate and move the rotors of the generator. The most common kinds of hydraulic turbine are the Francis turbine, Pelton wheel, and the Kaplan turbine. Two engineers, Sir Charles A. Parsons and Carl G. P. de Laval (of Great Britain and Sweden, respectively), pioneered the building of hydraulic turbines during the late 19th century. Continual developments and improvements of basic machines made hydraulic turbines to be the main power sources utilized to drive most large electric generators (Reynolds 1970). Another kind of turbine is the steam turbine. This is typically consist of conical steel shell that encloses a central shaft wherein a set of bladed disks are placed like washers. These blades are bent and extend outward (radially) from the edge of each disk. Some steam turbines have shafts that are surrounded by a drum wherein the rows of blades are attached. In between each pair of disks, there is a row of stationary vanes that are attached to the steel shell. These extend radially inward. Each set of vanes together with the bladed disk immediately situated/placed beside it constitutes one stage of the steam turbine. Most steam turbines have multistage engines (Columbia Electronic Encyclopedia [Online edition], 2007). Steam turbines are used mostly for electricity generation in thermal power plants, (i.e., plants using fuel oil or coal, or nuclear power). Steam turbines were once used to drive mechanical devices such as in the case of ships propellers. However, most such applications now utilize an intermediate electrical step or reduction gears. Gas turbines are now used mostly for aircraft engines. But there are still some gas turbines being used to drive electric generators (i.e., in an electric–gas turbine locomotive) as well as high-speed tools. The essential components of a gas turbine are (a) compressor, (b) combustion chamber, and (c) turbine that somehow resembles that of a steam turbine (refer to the description in the previous paragraph). The compressor is driven by the turbine, and then provides high-pressure air into the combustion chamber. In this chamber, the high-pressure air is mixed with a fuel and then burned. This makes the high-pressure gas(es) drive the turbine, with the same gas(es) expanding until their pressure decreases and reaches atmospheric pressure (Columbia Electronic Encyclopedia [Online edition], 2007). The last kind of turbine is the wind turbine, which as the name suggests converts the kinetic energy coming from the wind into mechanical and/or electrical energy. If the resulting mechanical energy is directly used by a nearby or even attached machinery (e.g., pump or grinding stones), the turbine device is usually referred to as a windmill. But if this mechanical energy is used to generate electricity, then, the device is called a wind turbine, wind generator, or wind energy converter (WEC; Reynolds 1970). Wind turbines can be three-bladed, two-bladed, or even one-bladed (counterbalanced). Computer-controlled motors point them to the direction of the winds. Danish turbine manufacturers have utilized the three-bladed turbine type. This type of wind turbine has high tip speeds (even reaching up to 6 times the speed of the wind), low torque ripple, and high efficiency, which contributes to the overall good reliability. This type of turbine is the one that is being commercially used to generate electricity. In many cases, the blades are colored in such a way that it blends with the clouds. The length of these blades usually ranges from 20 to 40 meters (or about 70 to 100 feet) or more, while the height is about 200 to 295 feet. Contemporary wind turbine models rotate at a speed of 16.6 rpm (revolution per minute). As a safety precaution to avoid overspeed damage, most wind turbines are equipped with automatic shutdown features during strong winds (Reynolds 1970; Wikipedia, The Free Encyclopedia 2007). There are other kinds of turbines, albeit fewer and smaller ones, in existence. These are the transonic turbines, contra-rotating turbines, statorless turbines, ceramic turbines, and shroudless turbine. Other uses of turbines Almost all electrical energy being used on Earth is generated with any one of the turbines discussed. Turbines with high efficiency can harness approximately 40% of the produced thermal energy, with the rest of the output exhausted as waste heat. Turbines are being utilized by most jet engines to provide mechanical energy from their fuel and working fluid as do most, if not all, power plants and nuclear ships. Reciprocating piston engines (like those found in aircraft engines) can utilize a turbine to drive an intake-air compressor. This configuration is known as the turbocharger (or turbine supercharger) or more colloquially known as â€Å"turbo.† Most turbines are capable of having very high power density the ratio of power to volume, or power to weight. This is due to their ability to function at extremely high speeds (Wikipedia, The Free Encyclopedia 2007). As of yet, no one has established any limitation for this invention of humankind. And with enough research and development, the present capability of these machines can even yield astonishing achievements. Woks Cited Calvert, J. B. â€Å"Turbines.† Date accessed: November 29, 2007 (http://mysite.du.edu/~jcalvert/tech/fluids/turbine.htm). Daugherty, R. L., and J. B. Franzini. Fluid Mechanics. 6th ed. New York: McGraw-Hill, 1965. Reynolds, J. Windmills and Watermills. New York: Praeger, 1970. Strandh, S. A History of the Machine. New York: AW Publishers, 1979. â€Å"Turbine.† Britannica Concise Encyclopedia. Encyclopedia Britannica, Inc., 2006. Date accessed: November 29, 2007 (http://www.answers.com/topic/turbine). â€Å"Turbine.† The Columbia Electronic Encyclopedia. 6th ed. Columbia University Press, 2003. Date accessed: November 29, 2007 (http://www.answers.com/topic/turbine). â€Å"Wind turbine.† Wikipedia, The Free Encyclopedia. Wikimedia Foundation, Inc. Date accessed: November 29, 2007 (http://en.wikipedia.org/w/index.php?title=Wind_turbineoldid=173495357).

Thursday, October 3, 2019

Pros and Cons of the Quebec Separation Issue

Pros and Cons of the Quebec Separation Issue The separation of Quebec is a very controversial issue in Canada, but why? Some people, such as those who live in Quebec believe Quebec should separate from Canada. They believe that their province would be better off on its own as its own country. Others, mainly those from other parts of the country, but still some from Quebec believe that Quebec should stay, that Quebec is a big part of Canada and would not be the same without it. If Quebec stays, Canada maintains its large piece of land on the map, the history that goes along with it, and the millions of people living there, but if Quebec separates, Canada would get rid of a large chunk of its debt (which would go to Quebec). This raises two very important arguments between for and those against the separation of Quebec from Canada. There are several benefits of Quebec separating from Canada. If Quebec were to separate, there would be no more disputes over the French and English languages that are spoken in Canada. Canada could have its bilingualism, and Quebec could become its own strictly French nation with no English spoken anywhere. Canada is a bilingual country; French is even mandatory in English schools up to and including grade 9. It isnt right if Quebec is only going to offer a French education to its children. Quebec is already separate in a way from Canada. They have their own civil laws, and their street signs only read in French. In 1980 there was a referendum to separate Quebec from Canada. This referendum was defeated when 41.5% of the people voted yes and 56.5% voted no. But the Quebecers were still fed up. Many people still did not want to be part of Canada, so they decided to try again. This time, it seemby a 50.58 % to 49.42 % margin, the closest in the history of Canada.ed to have more suppor t than ever before, even from people that didnt live in Quebec (although people who didnt live in Quebec werent involved in the vote.) It took place in 1995, and the motion to pursue independence was again narrowly defeated Whenever there are pros to an issue, the cons are never far behind. There is a big downside to Quebec separating from Canada. Canada is a bilingual country, the worlds first in fact and despite the fact that Quebec likes to be called strictly French, it is still a huge part of its bilingualism. Almost every person who lives in Quebec knows some form of French, and anyone who doesnt is probably in the process of learning it. People who are visiting from French-speaking countries may be attracted to the Quebec area because of its French-speaking nature. This is good for the tourism industry and can bring in some extra bucks to help pay off Canadas debt. Canada is also country that has a population of 30 million plus, that number growing each day. We are also the second largest country in the world as far as actual land goes. If Quebec were to separate from Canada, we would lose all of this. Out population would shrink by 7.4 million people, and the size of our country would fall down almost 16 percent. And just think if you took Quebec off of the map. There would be a massive whole in Canada. Would it still be possible for Canada to survive? Would the east and the west be able to survive or would they be forced to join the United States? Quebec has flourished in Canada and proven it doesnt have to leave to achieve its needs.   It made French its official language by passing Law 101. Despite the rising increase in English-speaking, it has raised the number of Francophones in the province to the highest level ever. We sometimes fail to realize that Francophones have jumped on top of the Quebec economy to produced some of Canadas and the worlds leading technologies, companies and financial institutions like Bombardier (snowmobiles, all terrain vehicles, military aircraft, trains), Hydro Quebec, and le Cirque du Soleil. If Quebec ever separated, it would no longer be a part of NAFTA and would be forced to pay heavy duties on imports and exports of their goods. This would then cause them to raise the price of their merchandise which would eventually stop selling because of the availability of cheaper goods elsewhere. Does all of this mean something? Why does Quebec keep trying to separate? Obviously they dont want to be a part of Canada, so they should become a country of their own. Now some may say that the reason these referendums have not gone through is because people are scared of becoming independent. They are scared of the thought of their province, Quebec, not being a part of Canada. Does this make sense? Not at all. If you want to separate from something, then do it. If you want to stay with that something, then stay with it. But dont try and do both, that will get you nowhere and the fights will continue to plague the whole country. The real reason for this is that the people who vote for Quebec to stay a part of Canada are mostly middle aged people while the people that want Quebec to separate from Canada are the younger people and the older people. According to the website crave.com, Eventually, the young will be a majority and the yes vote side will win. It will end with them leaving , but not before more and more conflicts between the two sides, so they might as well go now. Another reason why Quebec should separate is that Canada has a large debt of over 150 billion dollars. This debt has been accumulating over the years, but Canada is slowly starting to come out of it. 25% of this debt would be the sole responsibility of Quebec if they were to separate which would make Canada at least 35 billion dollars further out of that debt. Although we will have lost a bit of our economy through the separation, this money would surely make up it for that loss. This would give Quebecers a nice discrepancy in their bank account to start off their country and eventually, they would have to start borrowing money from Canada. Over the years Quebec would start to pay the money back, with interest, and Canadas debt would be almost cut in half. The separation of Quebec from Canada is a very controversial issue. Should it happen or shouldnt it? Those for would like to see it happen so Canada can get rid of the French language all together, and to stop all the fighting and arguing that is constantly going on between both sides. They would also like them to separate for the sake of money that they would be paying to Canada. Others do not want Quebec to separate from Canada because they believe that it is a very important part of the Country. It connects the west to the east, the east to the west. Without it, there would be a very big hole right in the middle of the country and the rest of Canada would probably be forced to join the United States. I myself would not like to see Quebec separate from Canada for a few reasons. If they did separate, Nova Scotia would most likely join the U.S. Now although I do like to visit the country, I would never want to be a part of it. Another reason is that I enjoy shopping in Quebec and dri ving through Quebec. Its a fun place to be and the shopping never ends. Canada is just not the same without Quebec. As long as these two sides continue to fight and argue, the separation of Quebec will remain a very controversial issue in Canada. http://www.bookrags.com/essay-2006/1/30/214331/583

Wednesday, October 2, 2019

know what i hate :: essays research papers

You know what I hate happens? ( FUCKING EMBARRISSING MOMENTS ) ( Its like when your waiting for the Phone ) One Day after eating a hefty late lunch you sit around the house waiting for the phone to ring, this girl was supposed to come over to your house later, When out of no where came the impending inexplicable urge to take a big ass shit. Thinking it over you know you cant afford to miss the phone call, but also when you got to take a shit you got to take a shit. So taking a shit it is. Your on the toilet doing your business, you guess your about half way through when the phone begins to ring. Well your working on a big clunker right there and you didn’t have any time to wipe your ass, You run to the phone as quick as you can in the state your in. You finally finish the phone call and you put the phone down, she said she would be here in 5 minutes and Your like Werd, pimping it. Then you turn around and you see a trail of tiny wet spots of brown SHIT everywhere. You only have 5 minutes to clean it up. Trying to wipe it and get it out of the carpet, it spreads. The bell rings and y ou get dressed as soon as you can, your ass still remains un-wiped. She enters the house, she sees the stains on the floor and asks what it is, You say its chocolate ice cream, You try to steer her away but you know you couldn’t show your ass to her incase the shit stain outline appears on your pants, she bends over to smell and examine the stain on the floor.... she smells it, she gets an idea of what it is, and you try to steer her away, she tells you to come look at it closer, by then you have no choice, you bend over, she sees the shit stain outlines on your pants and her idea that those might be shit stains on the ground are confirmed........... The Date Is Over ( Its like Before You go into the hot tub ) Well The other day before hitting the road to a long drive to vacation I decided to leave on a full stomach so I wouldn’t be hungry on the journey there.

Facebook Activity Should NOT Play a Role in Employment Essay -- Social

As if employment isn’t already a topic of importance regardless of personal reason, most issues concerning it, hit close to home. Employment is influenced by many things. Some of the major influences are expected like drug testing and background checks. These have little to no amount of controversy, pending personal issues. Other things are not so anticipated, namely what content is on particular social media websites like Facebook. This exact scenario played out in my life much to my dismay. After I applied, interviewed and accepted a position in the education field, I received a phone call from the employer who informed me that they would no longer offer me the position due to an undisclosed reason. Subsequently, I began an investigation into the reason I lost the opportunity of employment with the school district, only to discover astonishing exploits, the culmination of which resulted in my misfortune. These exploits had originated from a personal conflict between an individual that was my friend on Facebook prior to the dispute. Though I can honestly admit that this altercation got vicious, I never believed it would go as far as it had. This individual took my name and pictures and attached them to messages that I had allegedly sent to her. These messages contained highly inappropriate and threatening material. Then she proceeded to send them to the administration department. One person in the Human Resour ces department came to the decision that even though he didn’t know me, my qualifications, or even if the allegations were true, my personal life and Facebook page disqualified me from employment. Incontestably, I felt this infringed on my constitutional rights, confidentiality, as well as my personal life. Most Ame... ... with job performance, and work time. Without this distinction a mental and physical toll is paid and it comes at a high cost to the motivated. Employment simply should not be based upon a personal social networking website, it is unconstitutional, breaks social expectations of confidentiality, as well as imposes upon personal lives and motivations. Unless contractually bound to obey particular guidelines concerning social media, it should play no role in obtaining or termination of employment. Considering that there was no proof of legitimacy and it did not happen on work property or time, undeniably my claim of hideous encroachment on these Rights and socially accepted standards is correct. This very travesty, lead to the children at that particular school district to potentially have to settle for a person that is less qualified than I for their education.

Tuesday, October 1, 2019

Comparison of life with seasons in nature Essay

At do you understand by the Standard Meridian? Answer Standard Meridian is the longitude on the basis of which a country’s standard time is determined. Standard meridians all over the world are generally those longitudes which are exactly divisible by 15 °. The Standard Meridian of India lies at 82 ° 30†² E longitude and it passes through Mirzapur in Uttar Pradesh. The Indian Standard Time is five hours and thirty minutes ahead of the Greenwich Mean Time. Q4) Why is Indian Ocean named after India? Answer Indian Ocean is named after India because India has the longest coastline on the ocean. It is surrounded by the ocean from three sides. The Indian Ocean serves as the major channel for India’s trade with other countries through sea route. It is the strategic importance of India on the Indian Ocean that has resulted in naming the ocean after India. Why has 82 ° 30†² E been chosen as the Standard Meridian of India? Answer 82 ° 30†² E has been chosen as the Standard Meridian of India because this longitude passes through the middle of the country. This balances the time gap of two hours between the westernmost and easternmost parts of India. Also, 82 ° 30†² E is exactly divisible by 15 i.e., a difference of 30 minutes. What is the reason for the time difference of two hours between the western most and eastern most parts of India? Answer There is a time lag of two hours between Gujarat in the west and Arunachal Pradesh in the east. This is because of the difference of almost 30 ° in terms of longitudinal coordinates between Gujarat and Arunachal Pradesh, the westernmost and the easternmost parts of the country, respectively. According to the time system, time increases from west to east by one hour with every 15 °. Since Arunachal Pradesh is 30 ° ahead of Gujarat, there is a time gap of two hours between the two. Which Indian states share their boundaries with Pakistan? What is the effect of this? Answer Four Indian states, namely Jammu and Kashmir, Punjab, Rajasthan and Gujarat  share their boundaries with Pakistan. Owing to their boundaries with Pakistan, these Indian states are of strategic importance to India. Heavy military forces are always deployed in the border areas of these states. Safety of the people of these states is a paramount concern for the government, as India does not share a friendly relation with Pakistan. 7) What is the significance of the Palk Strait and Gulf of Mannar? Where are they situated? Answer The Gulf of Munnar and the Palk Strait are situated in the Indian Ocean towards south of India. They are significant because they form the main dividing line between India and Sri Lanka. The narrow channel of sea formed by the Gulf of Munnar and the Palk Strait divides the Indian peninsula from the island nation of Sri Lanka. Q9) What were the main reasons that facilitated the growth of trade relations of India with the far-off lands? Answer Since ancient times, India has enjoyed the benefits of a favourable location in its trade relations with other countries. It is centrally located in Asia and has access to both land and sea. Since ancient times, India was well connected with countries of West Asia, Europe and China through land routes. These trade routes facilitated the exchange of goods and people on a large scale. Also, India is surrounded by sea from three sides. This opened-up the vast possibilities of maritime trade for India with south-east Asian and African countries. Owing to these favourable conditions, India was able to amass huge wealth through its foreign trade. Describe India’s location in the world. Answer India is located in the northern hemisphere. It is a southward extension of Asia. India has a total area of 3.28 million square km. It is surrounded by sea from three sides. Towards its south is the Indian Ocean, to the east is the Bay of Bengal and to the west is the Arabian Sea. The geographical coordinates of India are 8 ° 4†² N to 37 ° 6†² N latitudes and 68 °7†² E to 97 ° 25†² E longitudes. Tropic of Cancer (23 ° 30†² N) passes midway through India. India has two groups of islands: the Andaman and Nicobar islands in the Bay of Bengal and the Lakshadweep islands in the Arabian Sea. India’s north is bestowed with the mighty Himalayas. It is a favourably located country in the world.