Thursday, January 30, 2020

Fukushima Earthquake And Tsunami 2011 Essay Example for Free

Fukushima Earthquake And Tsunami 2011 Essay In March 2011, Japan was struck by a magnitude 9.0 earthquake and a following tsunami. Authorities concluded that the earthquake was the cause of the Pacific plate releasing the friction built up after years converged under the North American plate (as shown in figure 3) along the fault line that lies kilometres away from Japan’s coastline. (Urbano, 2011)This caused the friction to spread through the ground-and what was originally said to be a magnitude 6.6 earthquake through the evaluation of incomprehensive readings from seismometers- shook Japan for over five minutes. The resulting tsunami was triggered by the explosive energy released by the earthquake. However, its damage was minimized by 10m high sea walls and the modeling of buildings along the coast, which had applied various scientific techniques to reduce impact from waves on actual buildings. Macintosh HD:Users:160161:Desktop:Unknown-1.jpeg Earthquakes are a very significant problem around the globe and can cause havoc through towns. The Japan earthquake and following tsunami resulted in 20000 deaths and caused the destruction of entire towns and many coastal areas of the country- the most notably being the TÅhoku region in Honshu. (Pletcher, 2013) A large percentage of the damage and lives lost could have been avoided if sciences techniques in detecting earthquakes- such as seismometers- would have alerted authorities in advance rather than minutes before the earthquake struck, as well as conveyed more accurate readings. Around the globe scientists and organisations have attempted to develop method of detecting earthquakes so that maximum damage can be prevented. Currently, around the globe seismometers, sea walls and building modeling are used to detect earthquakes through the readings of seismic waves. This scientific solution has potential to minimise damage from earthquakes and tsunamis around the globe if implemented correctly and its negatives minimized. The Application of Science To Detect Earthquakes and Consequently Prevent Damage-Seismometers Earthquakes can be detected by measuring the frequency of the seismic waves in a particular area using a scientific device such as a seismometer. Seismic waves are circular waves (see figure 4) created by the back and forth movement that occurs when an earthquake shakes the ground, thus releasing waves. A magnitude 8 or 9 earthquake- like the one in Japan 2011, are caused due to the faster and rapider movement of the ground. This releases a higher frequency of seismic waves that can be detected by scientific instruments like a seismometer-just as they were during the Fukushima earthquake. The science behind the implementation of seismometers in earthquake prone areas such as Japan is that they use the basic principal of inertia to detect seismic waves in the earth’s surface. They consist of a ground motion detection sensor and a recording system. In a simple seismometer’s detection system, a weight and a spring are suspended from a frame that moves along with the earth’s surface. As the earth moves, the relative motion between the weight and the earth, which is caused by seismic waves is measured by the recording system which consists of a rotating drum attached to the frame, (as shown in diagram 1) and a pen attached to the mass. This pencil moves along with the weight and the spring, leaving lines along the drum, which can be interpreted into determining the frequency of seismic waves and the magnitude of the coming earthquake by authorities.(Braile, 2000)Modern seismometers are electronic, and instead of using a pen and drum, the seismic activity generates an electrical voltage that is recorded by a computer. The reason why Japanese authorities and other nations around the world choose this science to help detect earthquakes is because it allows them to determine before hand when an earthquake is going to happen. Seismographs gather information over a long period of time and the patterns in the seismic wave frequency are easily analyzable. Seismometers were implemented in Japan’s coastline by local authorities with readings going to computers where the data from seismic waves was analyzed. This brought to the early conclusions that the earthquake was a magnitude 6.6 and later upgraded to 9.0 from further readings showing an increase in movement within the ground. Seismometers also bring a change in scientific research about certain regions and their risk to earthquakes, as it allows for research to be collected at various points before, during and after an earthquake, so that warnings can be sent out in advance next time or before an aftershock. (Dea, 2003) The Effectiveness of Detection/Damage Prevention Techniques Used In Japan Seismometers- Science’s solution to the problem-can be used to detect earthquakes and their location so that maximum damage can be prevented. In theory, scientists in Japan should have been able to pick up the earthquakes where about, magnitude and timing from the seismic activity under the earth’s surface that should have been detected by numerous seismometers located on the Pacific Ocean’s seabed. Scientists can use the readings gathered- based on the frequency of the waves-to calculate the magnitude of the earthquake before it reaches by working out the difference in arrival between two waves from tree different seismometers. (BBC, 2013) If the gap between the two arrivals is shorter, then the magnitude of the earthquake is also higher. Fukushima scientists also used this method to determine the exact location of the earthquakes epicentre through the process of triangulation in which they determine the distance travelled by waves at each of the three seismomet ers and pinpoint the centre (as shown in diagram 2). Seismometers certainly helped to detect the Fukushima earthquake. Evidence shows that almost a thousand lives were saved due to seismometers monitoring the Pacific seabed. They proved effective in saving lives because they were able to pick up the sudden seismic activity in the ground. The detection allowed scientists back in Japan to sound an alarm minutes before the earthquake arrived in Japan. However, the initial alarm was quite inaccurate, as it was originally sounded for a 6.6 magnitude earthquake. Over the last century around the world, scientists concluded that 9/10 times seismometers were initially incorrect in detecting the magnitude of the numerous earthquakes (Strevens, 2011). Seismometers also have many more limitations, which cause for the technology to be deemed ineffective at times and can be used to partially explain some of the issues that occurred in Japan- issues that could have been avoided. Unlike NASA’s InSAR satellite technology that can detect earthquakes day before they occur (due to its ability to detect even 1cm of movement within the earth) (NASA, 2011), seismometers are only able to detect earthquakes minutes before they happen and the only way scientists can actually issue a warning in advance is if they look closely at the patterns in previous earthquakes or try and interpret seismic readings days before and see if there are any abnormalities. The limitations of possible inaccuracy with data and late warnings made the use of the seismometers quite ineffective during the earthquake. Although seismometers are able to pinpoint the exact location of the epicentre so that aftershocks can be predicted and are able to give a few minutes of warning about the magnitude, it is a scientific device that’s success can easily be affected by influence human error plays in analyzing its data on computers. Sea walls were implemented in Japan to protect its coastal cities from tsunamis. The science behind them is that its strong concrete material, from which it is made of, should be able to block the force of a tsunami. Their height- 10 metres above sea level- were supposed to be sufficient to stop most tsunamis as evidence shows that it is very rare in any part of the world for a tsunami over 10m to a region that is not directly over the fault line. However, if a tsunami were to reach such heights, the sea walls success would be limited greatly. A positive of their use though, is that their success is largely predictable as they do not require any electronic systems to function and nor do they have any human influence. Macintosh HD:Users:160161:Desktop:Screen Shot 2013-10-27 at 6.40.21 PM.png Sea walls proved ineffective in Japan as the tsunami proved to also be 10 metres tall due to the water being very deep in the region. This allowed the tsunami to build up its waves and when the tsunami’s biggest waves arrived at the coast of Japan, they were 1m taller than the walls event though they were still only 10m tall. (Tran, 2013) This was due to the fact that the coastline had dropped by a metre and also moved three metres out to sea. (As shown in figure 5) This outside influence limited the success of the walls greatly and although- in many other tsunamis sea wall have effectively haltered tsunamis due to their concrete strength and height- the tsunami of 2011 flooded into Japan killing thousands that could not escape in the few moments of warning. Sciences Interaction With The Environment The environment has minimal impact on the application and effectiveness of seismometers and sea walls. As seismometers are not affected by an areas air pollution, vegetation or climate, the environment does not play a significant role in positively or negatively affecting the detection ability of seismometers. However there are still a few minor factors- particularly in Japan- that can somewhat prevent an earthquake from being detected accurately. Due to Japans vulnerable earthquake-prone region being located along the Pacific Ocean’s coastline, many low intensity stress waves created by natural noises and ocean waves have the ability to be detected by seismometers. This is because seismometers can detect and measure motions with frequencies from 500 Hz to 0.00118 Hz- a large enough range to detect ocean waves- particularly in the Pacific Ocean. This could have a negative effect on the effectiveness of science’s solution. Negatively, seismometers could be alerting Japan ese authorities every time tidal waves and ocean currents strengthen, thus triggering alarm bells constantly. A positive effect that the Japanese environment has on damage preventing solutions such as sea walls is that the Japanese coastline has numerous mountain and hill landforms. The many hills and low mountains located in Japans coastal region (sea figure 6)-especially where the Fukushima earthquake struck-help to prevent damage due to there significant height above sea levels. This environmental benefit was evident during the 2011 earthquake as authorities guided civilians to high ground so that when the tsunami arrived and the sea walls failed, the landforms saved a few hundred lives. (ONISHI, 2011)This was because the 10m height of the tsunami eventually deteriorated by the time it reached the landforms, thus preventing further damage from occurring. As mentioned above, the environment has minimal influence on the application and effectiveness of seismometers and sea walls, although sea walls do have an effect on the environment. To construct and implement sea walls, natural, agricultural and grassland is destroyed to make way for them. Sea walls require a large amount of space (width and length) if they are to be firm, sturdy and cover a large proportion of the coastline. They also negatively impact the climatic environment as their height to some extent interrupts the sea breeze that Japan receives from the ocean. This means that locations near the walls will be drier in the already tropical climate and environment. Once again these negative effects on Japan’s environment are not significant factors although if these scientific damage prevention measures were not present in Japan 2011, the environment would have been damaged greatly like it was in some towns that were destroyed completely. Economic Interaction Sciences detection and damage prevention solutions have a profound effect on the economy of Japan. The Japanese government invests billions (USD) in coastal defenses such as sea walls and warning systems every year. These expensive devices further cost governments around the world millions whenever a warning and consequent evacuation occurs. For example, since Hawaiis Pacific Tsunami Warning Center was established in 1948, about 75 percent of warnings that resulted in costly evacuations turned out to be false alarms (Pendick, 2012). A positive effect that Japan’s economy has on seismometers and warning systems is that it can afford to research deep into ways on improving the technology, as well as, fund the expensive costs involved with implementing and running them. There is very little limitations that Japan’s economy poses to seismometers as the economy is very stable and has been for the last decade without fluctuating too much (see graph 1), thus allowing for billions to be invested. This allows the government to invest in earthquake damage prevention devices so that when an earthquake strikes, damage costs can be kept to a minimum. Seismometers and damage prevention devices have a major influence on the economy. When the earthquake of 2011 struck and damage was high- especially from the burst reactor in the Fukushima Nuclear Plant- Japan’s tourism industry suffered greatly. This had a chain reaction on the economy with a major dip in Japan’s GDP (as shown in graph 1) during the period. Conclusion For many years now, scientists have attempted to come up with ways to detect and consequently, prevent earthquakes with measured success- especially in the Fukushima earthquake of 2011. Although the application of science through the use of seismometers potentially saved thousands of lives in the few minutes of warning, it’s accuracy and timing was not enough to stop a nuclear disaster. The 10m sea walls that were located around Japans shoreline also proved ineffective as the tsunami soared over them, leaving all types of buildings to be struck down by the shear force of the waves. However, scientists continue to apply their knowledge of earthquakes, tectonic movement and seismic waves so that they can enhance this solution for future earthquakes around the globe. Seismometers and sea walls fit into the world environment nicely as they do not affect it, but rather help to prevent damage occurring to it, whilst the modeling of buildings simply has the same impact as normal buildings do. Economic wise though, billions of dollars are put into the science and evidence shown from Japan might suggest, too much money for fairly inconclusive success. There are some variables in science that we can’t control, but what can be controlled is minimizing their damage to civilization through the processes of detecting and preventing damage. Bibliography BBC. (2013). Seismic waves. Retrieved October 28, 2013, from BBC Bitesize: http://www.bbc.co.uk/schools/gcsebitesize/science/waves_earth/seismicwavesrev2.shtml Braile, L. (2000, November). SEISMOMETER. Retrieved October 28, 2013, from Explorations In Earth Science: http://web.ics.purdue.edu/~braile/edumod/handseis/handseis.htm Dea, J. (2003, August 11). Anticipating Earthquakes. Retrieved October 27, 2013, from NASA Science: http://science.nasa.gov/science-news/science-at-nasa/2003/11aug_earthquakes/ Densmore, A. (2011, March 14). Sendai earthquake and tsunami disaster . Retrieved October 29, 2013, from Institute of Hazard, Risk and Resilience: http://ihrrblog.org/2011/03/14/sendai-earthquake-and-tsunami-disaster/ Doedens, P. (2013, September 20). MAGNITUDE-5.3 QUAKE HITS FUKUSHIMA. Retrieved October 25, 2013, from Fukushima Update: http://fukushimaupdate.com/magnitude-5-9-quake-hits-fukushima/ Kong, S. C. (2013, March 20). Japans Economy. Retrieved November 2, 2013, from The Market Oracle: http://www.marketoracle.co.uk/Article39557.html Kordian. (2012, May 8). Natural Disaster . Retrieved November 1, 2013, from Oxonian Globalist: http://toglobalist.org/2012/05/risky-business-uncovering-catastrophic-insurance-risks-in-2012/ NASA. (2011). Anticipating Earthquakes-InSAR Satellites . Retrieved October 28, 2013, from NASA Science: http://www.google.com.au/search?client=safarirls=enq=why+did+seismometers+pick+the+japan+earthquake+as+magnetide+6.6ie=UTF-8oe=UTF-8gws_rd=crei=jMhwUtjfJcW_kQXUiYCQBQ#q=why+did+seismometers+pick+the+japan+earthquake+as+magnitude+6.6rls=en ONISHI, N. (2011, March 13). Seawalls Offered Little Protection Against Tsunami’s Crushing Waves. Retrieved October 27, 2013, from The New York Times: http://www.nytimes.com/2011/03/14/world/asia/14seawalls.html?pagewanted=all_r=0 Pendick, D. (2012). Catching a Tsunami in the Act. Retrieved November 2, 2013, from Savage Earth: http://www.pbs.org/wnet/savageearth/tsunami/html/sidebar1.html Macintosh HD:Users:160161:Desktop:Screen Shot 2013-11-04 at 11.43.28 AM.png

Wednesday, January 22, 2020

Violence and Rock & Roll: Hand in Hand? :: essays research papers fc

Violence and Rock & Roll: Hand in Hand? People that have been to concerts know what kind of damage goes on, and how many innocent people are hurt by the violence that goes on at these shows. This is something that needs to end. Many people have been punched, kicked, shoved, thrown, hit by flying objects, fallen, trampled, crushed and, sadly in many cases, sexually assaulted. Concert-goers have suffered from concussions, wounds, rape, and death. All this violence can be ended, but it’s getting worse and worse by the day. The more the fans get out of hand, the more injuries people will undergo. Many people don’t want to go to concerts any more, because of the fact that there is too much hostility.   Ã‚  Ã‚  Ã‚  Ã‚  Concerts nowadays are too brutal. This violence needs to end. Even the artists that play at these shows are outraged by this aggression. Even they want to make this end. â€Å"Concerts get such a band name, because of all the [violence] and everything like that,† said Limp Bizkit (a ‘flavor-of-the-month’ band) guitarist Wes Borland. Sprains and broken bones resulting from moshing (a violent form of â€Å"dance† in which fans careen off one another) and crowd surfing (a practice in which fans are passed over head by the members of the crowd) have been common at concerts for many years. As many people remember at Woodstock ’99 the destruction at the festival was at its peak. This shows how degraded popular culture has become. â€Å"The thing that I felt was unfair, in the follow-up in the press, was the demonization of a generation,† said guitarist Tom Morello of, a popular band, Rage Against the Machine, â€Å"There was jus t this vilification of a whole generation and the bands that they like, based on this concert. I think it’s ridiculous.† (Arizona Republic, 10-3-99) But who’s to say that this violent behavior doesn’t go on at other concerts? Well, in fact it does.   Ã‚  Ã‚  Ã‚  Ã‚   One trend that has occurred at concerts, are the numbers of sexual assaults. Many girls have been groped, sexually harassed, beat, and even in many cases raped. Just at Woodstock ’99 alone there were 8 sex offences, which included an alleged mosh pit rape, which police were aware of. Tom Morello also added that, â€Å"The one thing that is absolutely unforgivable or unpardonable are the reported sexual assaults.†(Arizona Republic; Phoenix; Oct. 3, 1999) The mosh pit scene at a recent Vans Warped Tour show in Asbury Park, N.

Tuesday, January 14, 2020

Compare or Contrast Public and Private Companies

In today’s highly commercial world, one of the key objectives of starting a business is to make profit. While this might be true and important to every business, â€Å"most people believe that a business should not focus solely on profitability, but on the quality of products and services it offers to its customers†.This essay will discuss the various perspectives on the topic and will to a large extent agree with the view that businesses should not just focus on profit, by looking at customer desire for high quality product and their willingness to pay, then highlighting how focus on quality can lead to lower cost of product and profitability; as well as how quality influence organisation to be socially responsible, sustainable and profitable.First, a strong reason to concentrate on improving quality of product or services of an organisation is the fact that customers desires high quality good, and are willing to pay for value added. This was corroborated by (Nagar and Rajan 2001), who found out that â€Å"poor product quality reduces customer goodwill and loyalty which in turn affects future revenues as dissatisfied customers take their business elsewhere or pay less for the firm’s product. Such a product and the firm producing it acquire a bad reputation since poor product quality leaves a lasting impression on the consumer who perceives it as a low quality brand. In order for a product to be a perceived as a premium brand, a firm must continually improve on the quality of its products or services. A satisfied customer base lead to good brand perception and will open the door to numerous repeated purchases and referrals which will in turn help the firm to grow its market share, become more competitiveness and increase its profitability.Focusing on quality significantly lowers cost of production at long run. Operations Management (Russell and Taylor, 2000) explains that, manufacturing of products to a high quality standard through implem entation of quality management system have a large impact on overall quality cost reduction, it also argues that it saves time and money by reducing the amount of defective products that could result in wastes, thereby lowering significantly the costs of production, as well as cost to re-work defective products.Without a quality management system, poor-quality and defective products may finds their way into the market, through to the customer leading to warranty claims, product returns and in extreme litigation from product liability or injury to the customer. This may have a serious financial implication to the company as the costs associated with product recall and warranties would be enormous and in extreme case the damages imposed due to litigation could make the company insolvent, leading to a total collapse.However, an opposing view on this is that profit maximization is should be the main focus of the business as long as it pays its taxes and operates within the ambit of the law (Friedman, 1962). Certainly, this view may have worked for organisations in the 1800’s; it definitely does not apply in today’s modern and globalised world. The perspective is not only very narrow in view; it also fails to take into consideration other stakeholders who are affected by its activities of, but can also affect its existence.To these types of organisations, making ethical decisions is seen only from the viewpoint costly and profit. Organisations operating for profit alone are yet to appreciate the advantages of good corporate social responsibility and capitalize on it to grow their businesses in a sustainable and socially responsible manner. This drive for profit has led many to slash of employee’s benefits and salaries benefits; pollute the environment and cause permanent damage to the ecosystem all in bid to improve their bottom-line and many have earned a very bad reputation, suffer product boycott and tarnish their corporate image.In concludi ng this essay, as much as profit is very essential to the survival of a business, I want to agree that businesses should focus more on the improving quality of its products or services. This can be clearly seen to from the fact customer expects high quality at good value always, and because improving the quality will eventually bring down cost of production for a company. As well, quality focus drives a company to take ethical decisions and operate in a socially responsible and sustainable manner.It may be tempting for a business to sacrifice quality in order maximize its profit. However, it benefits will only be in the short term. A simple focus on profit maximization could destroy the continued existence of the business, not to mention the society in which it operates. A firm aiming extreme profit might purposefully cut corners during a project, knowing it gets the perks of a better quarter for now; knowing a future management team will have to deal with the damage of spill-induce d lawsuit, fines, and a haul-up to it at the Criminal Court.

Sunday, January 5, 2020

Eating Food That Dies - 1900 Words

â€Å"Real food is alive – and therefore it should eventually die† (Food Rules: An Eater’s Manual 29). Foods with seemingly infinite shelf lives continue to reach Americans’ stomachs more frequently than ever before. Their impact on modern day America causes devastating health issues and diseases. Current heart disease, cancer, obesity, and diabetes rates have been drastically increasing since World War II (In Defense of Food 22). Today’s society fails to embrace the lost art of dining. Food manufacturers focus on the convenience of consumption and storage rather than the natural nutritional value of food. In an age when processed food consumption continues to escalate, and chronic diseases follow suit, current trends imply that natural,†¦show more content†¦Fast food restaurants in particular promote nourishing and nutritious dishes without mentioning the overwhelming amount of sodium, calories, and fat in each dish. With many families involved in numerous extra-curricular activities, fast food has become a staple in today’s society. Olive Garden, one of America’s most famous Italian restaurants, advertises â€Å"fresh, delicious Italian food† (â€Å"Who We Are†). While they may be delicious, many dishes at Olive Garden will not provide any health benefit for the consumer (Barnhart). Many of the dishes served, including the â€Å"Chicken Alfredo Pizza,† â€Å"Tour of Italy,† and â€Å"Steak Gorgonzola Alfredo,† have about 1,350 calories and 60 grams of fat each (Barnhart). With a suggested daily caloric intake of 2000 and daily fat intake of 65 grams by the Food and Drug Administration, each dish possesses over half a day’s worth of calories and nearly an entire day’s worth of fat (Barnhart). The â€Å"Chicken Alfredo Pizza† alone contains 3,200 milligrams of sodium, over twice the daily recommendation (Barnhart). Often misleading, many fast food restaurants sell â€Å"healthy† salads no better than their burgers. A McDonald’s Caesar salad without chicken or dressing contains 90 calories, 4 grams of fat, and 180 milligrams of sodium (â€Å"McDonald’s Nutrition Facts Calorie Information†). With grilled chicken, it contains 220 calories, 6 grams of fat, and 890 milligrams of sodium (â€Å"McDonald’s Nutrition Facts Calorie Information†). The crispyShow MoreRelatedLiterary Analysis Of A Farewell To Arms1581 Words   |  7 PagesA Farewell to Arms is a war novel that follows an American Frederic Henry who is an ambulance driver in Italy volunteering in World War One. What does one generally associate with Italy? Most people would say its food, beautiful sights, romance and pleasant weather. Now, how about World War One? Brutal trench warfare, disease and mechanised killing. 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