Thursday, September 19, 2019
Teaching Philosophy Statement Essays -- Education Teachers Essays
Teaching Philosophy Statement In the movie The Matrix, Morphis says to Neo ââ¬Å"I can only show you the door, I canââ¬â¢t open it for you.â⬠The door that Morphis is talking about is this incredible vast knowledge that is unknown to Neo. What better person to show, to teach, to inform Neo than his teacher, Morphis. You see, I see myself as Morphis, the teacher, whenever I step into a classroom. As I look across the room, there isnââ¬â¢t just one ââ¬Å"Neoâ⬠, but there are thirty or forty Neos. This is an extreme job for someone that understands how hard it is to open that door. I have always heard throughout my life that the key to life is knowledge; the key to success is knowledge. These are two different subjects that can be touched upon. Knowledge is powerful, I do understand that; and it can also take you places. When kids are in high school, they donââ¬â¢t care about school; they care about what they look like and who their friends are. They care about other peopleââ¬â¢s opinion upon themselves, not what they think about themselves. This is what I know about the teenage years. Itââ¬â¢s a vast change from having your mother buy your clothes, to worrying about whether or not you will be going to the prom. My subject area that I have chosen is English. English can be ââ¬Å"cool,â⬠it can be fun, it can be educational. English is a subject that can present that door to opportunity that the teenagers donââ¬â¢t know about. I am the person that can show the students that door. I want to be that teacher that they remember when they are 40 years old and wondering who brought them where they are today. I want them to say ââ¬Å"Hey that was Mr. Neal that showed me how this was done, he inspired me to go to college and get a good job.â⬠Now I understand that as an Engli... ... would have never believed that I would want to teach it. I wanted to teach science. Times changed my mind and I wanted to teach English. I know that as an English teacher, times in the classroom need to be fun, creative, and the repetition of a story would not fulfill the need to be expansive. I know that I am smart enough to create a work plan that is different each and every day of the school year. My intelligence isnââ¬â¢t what I pride myself in, but itââ¬â¢s the talent that was given to me, that situation that gives me a chance to meet new people and become a part of them. Itââ¬â¢s that chance to show somebody that door that only they can open up, that chance to inspire them to open that door. I want to be an influence in somebodyââ¬â¢s life, I want to be the teacher that made him or her learn, and see that it can be fun and that it just takes a little time. I am that teacher.
Wednesday, September 18, 2019
Changing Feelings Towards Peter and Andrea in Once in a House on Fire E
Changing Feelings Towards Peter and Andrea in Once in a House on Fire 'Once in a house on fire' by Andrea Ashworth At the beginning of the Novel, A freak accident robbed Andrea of a loving father at the age of five. Her mother Lorraine, widowed at just twenty-five years old, was distraught, not least because she was left alone to raise Andrea and her younger sister Lauren ( also known as Laurie). By the time Andrea was six, she had a new 'father'... When the reader first meets Peter, it is difficult to contrive a clear opinion of him. He seems to show that he wants to be the children's "new daddy" by "lugging home bulging sacks of misshapen Mojos for my sister and I" He also appears to have a good relationship with his wife but we soon realise this is not so. A Jekyll and Hyde character, he swings between loving husband and father and violent, terrifying bully. Andrea would watch as her "mother smiled through his kissing compliments" but these soon turned into "vicious shouting matches which half the street could hear." The reader immediately feels anger towards Peter for his unjustifiable behaviour towards his family. But if you look at the quote, it is clear that it is a "match" which generally consists of two people or groups competing for supremacy. This shows that although Peter started the shouting, Andreas mother also played a part. This makes the reader feel annoyed. This is because although we feel that she should defend herself, she is contributing to the argument and therefore making it worse. Another incident showing how Lorraine contributed to an argument is when Peter comes home she has "got the kids cooking behind his back." and he is angry because he feels "she is lazing on her arse... ...What Peter has done is completely unexpected and brings out the Jekyll and Hyde element of his character. But for once, what he has done is neither loving nor hating. This reaction completely perplexes the reader. What this shows is that even though Peter is everything the reader thought in the first place, he is not as predictable and does not fit the stereotype. However this does not make the reader begin to like him but pity him even more. What is eventually clear is that although we do not think he intended it, Peter subconsciously started to, if not completely break the cycle he himself started. This is where the feelings of the reader can be divided. On one hand It could said this was just chance and it was Andrea who eventually broke the cycle or, it could also be said that they both played equal parts and eventually even Peter had, had enough.
Tuesday, September 17, 2019
SMOKE CITY: A STORY OF REDEMPTION :: essays research papers fc
INTRODUCTION The 21st century is an age of environmental awareness. We have commissions and agencies that measure our pollution in minutiae level parts per million. There is study after study of the affects of not only elemental health pollution, but also mental health pollution. Although there is no doubt of the importance of this era of hyper-awareness of this movement, it is a new phenomena in the spectrum of history. In the United States, a vanguard in environmental awareness has only seriously started legislating pollution controls for the protection of its citizens in the past thirty years. Many detractors, even today, feel that it is a loosing battle and that regulation of pollution control is indirect conflict with the industrial machine that is the backbone of the United States economy. However, there is one example of a region of this country that demonstrates not only the successful combination of environmental control and business, but this relationship was started forty years before the nations first pollution regulations were drafted to Congress. Pittsburghââ¬â¢s story is one of suffering and redemption that no city, no community no region can claim to be more tragic and hopeful in its fight against pollution. A city founded in a river valley rich with resources; central access by water, rail and road; and integral to the key to the creation of a nation; Pittsburgh knew days when no vegetation grew from the soil and the sky was permanent midnight twenty four hours a day. That was life in the monikered ââ¬Å"Smoke Cityâ⬠until citizens and businesses took fate into their own hands and cleaned themselves up. Their struggle endured hardship and death, but the residents of Pittsburgh found themselves after two hundred years of darkness living in one of the cleanest major cities in the country. HISTORY Before Europeans traveled the Monongahela to the confluence of the ââ¬Å"Three Riversâ⬠of the Allegheny, Monongahela and Ohio, Pittsburgh was a sparsely populated area even by the Native Americans. At best it was a rendezvous point for trade, claimed by no one due to the difficulty in traversing through large waterways and steep hills. For colonists, the trek over the Appalachian and Allegheny Mountains was enough to make the Pittsburgh region almost unreachable. On November 23, 1753, an officer of the Virginia Militiaââ¬âMajor George Washingtonââ¬âsent to give warning to Britainââ¬â¢s enemy, the French forces, on the Ohio river a warning as a precursor to the French & Indian War-ââ¬â noted in his journal the confluence of the major rivers.
German Indian Partnership for IT Systems Essay
Very good morning to all of you and a warm greetings on behalf of Centre for infrastructure, Sustainable transportation and urban Planning (CiSTUP), Indian Institute of Science and National Academy of Science and Engineering Germany (ACATECH).. Today we have guests of honour Mr. Rolf Saligmann, German General Consul, Bangalore, Mr. Subir Hari Singh IAS, Addl. Chief Secretary, Govt. of Karnataka, Dr. Christian Aulbach, Science and Technology Counselor, German Embassy, Delhi, Dr. A. Ravindra IAS, Advisor to Chief Minister, Govt. of Karnataka. We also have on the dias Prof. Dr. Otthein Herzog, Executive Board member, National Academy of Science and Engineering, Germany who is the main brain behind this event. We also have Prof. B.N. Raghunandan, Divisional Chair, Earth and Environmental Sciences, IISc who will preside over the function. Warm welcome to other dignitaries off-the dias, Guests and Invitees, press and TV persons, my dear colleagues and students, Ladies and Gentlemen. A warm welcome to all of you from CiSTUP which is started in 2009 with a generous support from Govt of Karnataka in particular BMTC, KSRTC, BDA and NERTC. In about 2 years, we have started a masters programme in transportation and infrastructure engineering, carried out many research and consultancy projects for the Govt of Karnataka and others, organized many conferences, symposium, brain storming sessions and round table meetings to address issues related with our cities in particular urban issues. CiSTUP has grown into a full fledge centre having more than 50 scientists/researchers and students associated with the centre carrying out many important research projects which is of interest to our city, state and the country in the areas of infrastructure, transportation and urban planning. We are organizing a Symposium and a workshop as part of German Indian Partnership for IT Systems (GRIP IT) on the 19th (today) and 20th May (tomorrow) respectively, The symposium is on ââ¬â ââ¬ËSmart Mobility and Energy Concepts for Megacitiesââ¬â¢. The GRIP IT Workshop on Smart cities is plannedà for 20th May 2011 at the Institute and it is restricted to selected and invited participation from industry and academicians. GRIP IT project is planned to act as a catalyst for future research and development collaborations between India and Germany by bringing together the German and Indian partners from the world of academics and industry and to provide a platform for networking. The focus of the initiatives are around the theme ââ¬ËSmart Citiesââ¬â¢ ââ¬â the various topics, technologies and the potential research and development potentials in and around the theme. The objective of the workshop is to further deepen our initiatives towards establishing a joint team of German and Indian research and industry partners to pursue high potential research topics of common interest to both countries and to explore possibilities of submitting joint proposals under the EU research framework programme. Towards the objective of identifying the right topics for a potential joint research initiative, we have initiated two studies ââ¬â one on mobility and the other on energy. The results of the study would be presented at the workshop tomorrow to help focus on the right topics and to work on the next steps towards joint research proposals. It gives me great pleasure to welcome the dignitaries on the dias and off the dias to this Inaugural function of ââ¬Å"Symposium on ââ¬â ââ¬ËSmart Mobility and Energy Concepts for Megacitiesââ¬â¢. This is a joint initiative of CiSTUP and ACATECH, Germany. It is a great occasion for CiSTUP, IISc and ACATCEH to come together to start a joint collaborations in the area of smart cities. We would like to take this opportunity to express our hearty welcome, on my behalf and on our Instituteââ¬â¢s behalf, to Honorable Consul General Rolf Saligmann for honoring our invitation to be the chief guest of this function and inaugurate the symposium. German Consular General is very supportive for such activities leading to large scale indo-german colloborations. We extend a warm welcome and present a bouquet of flowers to Mr. Rolf Saligmann, Consul General of the Federal Republic of Germany. We also welcome Mr. Subir Hari Singh IAS, Addl. Chief Secretary, Govt. ofà Karnataka and commissioner BMRDA, who is always supportive for such developmental initiatives and for accepting to grace this function and deliver his address. We present a bouquet of flowers to Mr. Subir Hari Singh. A warm welcome to Dr. Christian Aulbach, Science and Technology Counselor, German Embassy, Delhi, for this function. We present a bouquet of flowers to Dr. Christian Aulbach. A warm welcome to Dr. A. Ravindra IAS, Advisor to Chief Minister, Govt. of Karnataka, who is always supportive for such initiatives in CiSTUP and at the institute, we thank him for accepting to grace this function and deliver his address. We present a bouquet of flowers to welcome Dr. A. Ravindra. 2 Hearty welcome to Prof. B.N. Raghunandan for accepting our invitation to be with us today as a President of the function. We welcome him and present a bouquet of flowers to Prof. B.N. Raghunandan. We miss amongst us our beloved Director Prof.P. Balaram and Associate Director Prof. N. Balakrishnan, who are very supportive for such activities, who are unable to be here with us today due to other engagements. Hearty welcome to Prof. Dr. Otthein Herzog, Executive Board member, National Academy of Science and Engineering, Germany who has spent lot of time with me in coordinating this event. We extend hearty welcome and present a bouquet of flowers to Prof. Dr. Otthein Herzog. We have many distinguished professors, academicians and leading persons from germany and India. Also we have leading persons from R&D groups and Industry amongst us. Hearty welcome to all the speakers from Germany, India and also Officers of ACATECH and Dr. Ulrich Golgzback, Mr. mathew Joseph, Project manager at ACATECH. Special welcome to all the dignitaries off the dais and Invitees from the Govt of Karnataka, BMTC, BDA, KSRTC, DULT and Indian Institute of Science for taking the time off from their busy schedule to grace this function. We welcome press, TV persons, and officers of our institute, my colleagues from the centre and department, students and other invitees. Once again I extend hearty welcome to all of you for this inaugural function of the Symposium. ONCE AGAIN I EXTEND A WELCOME TO YOU ALL. Sitharam =========================== Prof. T.G. Sitharam, Ph.D.(Canada), FIGS, FIE; Chairman, Centre for infrastructure Sustainable Transportation and Urban Planning (CiSTUP) and PROFESSOR Department of Civil Engineering, Indian Institute of Science, Bangalore ââ¬â 560012, INDIA Tel.No.+91-80-23602261 / 22932919 ; Fax no. 080 ââ¬â 2360 2261 (phone/fax) / FAX no. 0802360 0404 (dept) email: sitharam@civil.iisc.ernet.in (preferred) / proftgs@gmail.com. web URL: http://civil.iisc.ernet.in/~sitharam ; mobile: 9448273751
Monday, September 16, 2019
Global Climate Change and Climate Protection
From September 6 to 10, 1997, the International Council for Local Environmental Initiatives (ICLEI) held a Cities for Climate Protection (CCP) Campaign ââ¬â U.S. workshop in Atlanta, sponsored by the U.S. Environmental Protection Agency, The City of Atlanta, The Climate Institute, and The Turner Foundation. ICLEI is the international environmental agency for local governments. It believes from concrete experience that local actions can have a global impact. ICLEI was established in 1990 through a partnership of the United Nations Environment Programme, the International Union of Local Authorities (IULA), and the Center for Innovative Diplomacy. ICLEI's World Secretariat is in Toronto. ICLEI also has offices in Freiburg, Tokyo, Harare, Santiago, and Berkeley. ICLEI's purpose and mission are to: 1) serve as an international clearinghouse on sustainable development and environmental protection policies, programs, and techniques being implemented at the local level by local institutions; 2) initiate joint projects or campaigns among groups of local governments to research and develop new approaches to address pressing environmental and development problems; 3) organize training programs and publish reports and technical manuals on state of the art environmental management practices; and 4) serve as an advocate for local government before national and international governments, agencies, and organizations to increase their understanding and support of local environmental protection and sustainable development activities. By ICLEI's 10th anniversary in the year 2000, ICLEI aims to establish a global system to achieve, measure, and report on tangible improvements in the global environment through the cumulative local performance improvements of ICLEI's member municipalities. ICLEI members include more than 265 local governments of all sizes from around the world from 50 countries, all of whom share a common purpose: to take a leadership role in identifying and implementing innovative environmental management practices at the local level. ICLEI's CCP campaign started in 1990 and consists of about 200 cities from Abu Dhabi to West Hollywood. The cities that sign on to the CCP campaign commit to: 1) estimate their 1990 carbon dioxide (CO2) equivalent (CO2e) emissions, 2) develop a CCP plan to reduce their CO2e emissions by 20 percent of their 1990 emissions by the year 2020, 3) demonstrate progress towards reducing their greenhouse gas emissions, and 4) update and implement their plan. Others are becoming involved in the CCP campaign. On September 19, 1997, Ted Turner of Turner Communications announced he would contribute $1,000,000,000 to the United Nations to address the issue of global climate change. On October 6, 1997, President Clinton held a White House Summit on Global Warming to help develop U.S. policy for the planning meetings in Bonn on October 20, 1997, and for the International Meeting on Global Climate Change to be held in Kyoto in December, 1997. Climate change is now recognized as a serious global issue by thousands of environmental professionals, atmospheric scientists, government officials, medical doctors, and health and property insurance companies. Climate change is serious because its adverse human health and physical effects, if unabated, will have vast and undesirable social, economic and political impacts. Ross Gelspan, prize-winning author of The Heat Is On: The High Stakes Battle Over Earth's Threatened Climate (1997. Addison-Wesley Publishing Co., New York) was the featured dinner speaker at the CCP workshop. Cause and Effects of Industrialized Climate Change Because of industrialization, the earth's surface and atmosphere is heating up to our peril as a species. The key issues in global climate change are expanding industrialization which burns carbon fuels in power plants and internal combustion vehicle engines to generate greenhouse gases beyond the capacity of the oceans and the biosphere to absorb the excess gases. These excess gases capture heat from the sun and cause global warming, increase air pollution, induce glacial and iceberg melting, sea level rising, unstable and more extreme and long-lived weather conditions, and shifting, prolonging and intensifying floods, droughts, hurricanes and El Nià ¯Ã ¿Ã ½o episodes. These effects lead to increases in respiratory diseases, habitat alterations, destruction of forests and wetlands, agricultural shifts, coastal erosion and flooding, societal dislocations and unrest, and perhaps, the demise of democracy as governments become more authoritarian to combat the emergencies induced by climate change. What lies ahead if the developed world cannot reduce its greenhouse gas emissions and the developing world seeks to industrialize and increase its greenhouse gas emissions? Greenhouse Gases, Their Properties, Sources and Emission Rates The major greenhouse gases are carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), halocarbon and related compounds (fluorocarbons CFC-11, CFC-12, CFC-113; hydrocholorofluorocarbons HCFC-22; hydrofluorocarbons HFCs; perfluorocarbons PFCs; and sulfur hexafluoride SF6), and the criteria pollutants ââ¬â carbon monoxide (CO), nitrogen oxides (NOx), and non-CH4 volatile organic compounds (NMVOCs) [U.S. Department of Energy, Energy Information Administration (EIA). October 1997. Emissions of Greenhouse Gases in the United States 1996 DOE/EIADOE/EIA-0573 (96). Office of Integrated Analysis and Forecasting, Department of Energy, Washington, District of Columbia or http://www.eia.doe.gov/oiaf/1605/frntend.html]. CO2 has a carbon equivalency of 0.273, CH4 has a higher carbon equivalency of 5.73, and N2O has an even higher carbon equivalency of 83.2. This means that CH4 has about 21 times the warming effect of CO2 and N2O has about 305 times the warming effect of CO2. SF6 has a very h igh global warming potential (GWP) of 23,900 times the effects of CO2. The currently estimated 1996 U.S. total greenhouse gas emissions are about 1,753 metric tons of carbon or carbon equivalent, or an increase of 8.3 percent over 1990 (EIA 1997). About 98.5 percent of U.S. human-made or anthropogenic CO2 emissions are caused by the combustion of fossil fuels to provide energy; U.S. anthropogenic CH4 emissions are due primarily to production and transportation of coal, natural gas and oil; anaerobic decomposition of municipal waste in landfills and raising livestock. N2O emissions are primarily from agricultural soils associated with fertilizer use, industrial process emissions, and emissions from fossil fuel combustion. Carbon dioxide. CO2 emissions are by far the largest percentage of greenhouse gas. Caused primarily by the combustion of fossil fuels to provide energy from energy plants and internal combustion engines, anthropogenic CO2 emissions are also produced by forest, agricultural, and other fires. At 1,496 metric tons of carbon or carbon equivalent, about 85.3 percent of the currently estimated 1996 U.S. greenhouse gas emissions are as CO2, based on GWP, or an increase of 8.8 percent over 1990 (EIA 1997). Methane. CH4 emissions are dwarfed by CO2 emissions (a ratio of 1 ton of CH4 for every 175 tons of CO2). Because the heat-trapping capacity of CH4 is about 21 times that of CO2, the overall effect of CH4 on global climate is significant. There is, however, substantial uncertainty in estimates of emissions from most U.S. CH4 sources, ranging from 25 percent to as high as several hundred percent. CH4 emission trends from each source tend to be more reliable than their overall estimated magnitude. At 177 metric tons of carbon or carbon equivalent, about 10.0 percent of the currently estimated 1996 U.S. greenhouse gas emissions are as CH4, based on GWP, or a decrease of 2.2 percent over 1990. Nitrous oxide. Compared to CO2 or CH4, N2O is released in small quantities from anthropogenic sources; however, N2O's 100 ââ¬â year global warming potential (GWP) of 305 makes it a significant contributor to atmospheric warming. Although there are many known natural and anthropogenic sources, N2O emissions have been difficult to quantify on a global scale because it has been one of the least-studied greenhouse gases. The largest source of anthropogenic N2O emissions is energy use, which includes mobile source combustion from passenger cars, buses, motorcycles, and trucks, and stationary source combustion from residential, industrial, and electric utility energy use. The second-largest source of N2O emissions is agriculture, primarily fertilizer application and a small amount released from the burning of crop residues. However, there is substantial uncertainty and debate regarding the emissions implications of use of N-based fertilizers. Models used for estimation are based on limited sources of experimental data. Another important source of N2O emissions is industrial production of adipic acid and nitric acid. At 38 metric tons of carbon or carbon equivalent, about 2.2 percent of the currently estimated 1996 U.S. greenhouse gas emissions are as N2O, based on GWP, or no net change over 1990. Halocarbon and Related Compounds. CFCs, HCFCs, HFCs, PFCs and other compounds that act as greenhouse gases are emitted from their use as refrigerants in cooling equipment, as solvents, or as blowing agents, or from fugitive emissions from industrial processes; these halocarbon compounds are being phased out under pollution prevention measures because they damage the stratospheric ozone layer. The best known class of synthetic greenhouse chemicals are the CFCs, particularly CFC-12 (trade name Freon -12). CFCs have many desirable features: they are relatively simple to manufacture, inert, nontoxic, and nonflammable. Because CFCs are chemically stable, they remain in the atmosphere for hundreds or thousands of years. These synthetic molecules absorb reflected infrared radiation at wavelengths that would otherwise be largely unabsorbed, and they are potent greenhouse gases, with a direct radiative forcing effect hundreds or thousands of times greater than that of CO2. Though molecule for molecule, CFCs absorb many hundreds of times more infrared radiation than carbon dioxide, their net warming effect is reduced because of their effect on ozone. Ozone (O3), beneficial in the stratosphere for its ability to absorb harmful ultraviolet radiation, is also a potent greenhouse gas. While the direct effect of CFCs is a warming potential far greater than that of CO2, their indirect effect on ozone reduces their net radiative forcing effects by half. SF6 is used as an insulator for circuit breakers switchgear and other electrical equipment; it also occurs as a fugitive emission from certain semiconductor manufacturing processes. At 42 metric tons of carbon or carbon equivalent, about 2.4 percent of the curr ently estimated 1996 U.S. greenhouse gas emissions are as HFCs, PFCs and SF6, based on GWP, or an increase of 68 percent over 1990. Criteria Pollutants. CO, NOx, and NMVOCs are reactive gases, which usually decay quickly in the atmosphere. Most CO emissions result from incomplete oxidation during combustion of fuels used for transportation. NOx emissions are related to air-fuel mixes and combustion temperatures during the burning of fuels evenly split between transportation and stationary sources. NMVOCs are a main component in the chemical and physical atmospheric reactions that form ozone and other photochemical oxidants. About half of the NMVOC emissions come from solvent-related industrial processes and most of the remaining emissions are from combustion of transportation fuels. Climate Protection Strategies The remedial strategies all have unintended consequences. These strategies are 1) greenhouse gas source reduction (Gelspan, 1997; ICLEI, September 1997, web page at http://www.iclei.org); 2) ocean modification to absorb more greenhouse gases (Joos, F., J.L. Sarmiento and U. Siegenthaler. 1991. Estimates of the effect of Southern Ocean iron fertilization on atmospheric CO2 concentrations. Nature, Vol. 349, No. 6312, p. 772-774); and 3) forest, wetland, and agricultural practices to sequester more gaseous CO2 (Hodges, Carl N., T. Lewis Thompson, James L. Riley and Edward P. Glenn. November 1993. Reversing the Flow: Water and Nutrients from the Sea to the Land. Ambio, A Journal of the Human Environment, Royal Swedish Academy of Sciences, Vol. 22, No. 7, p. 483-496). The most likely success strategy is greenhouse gas source reduction. Greenhouse gas source reduction activities include: à ¯Ã ¿Ã ½ Replace greenhouse gas generating activities such as coal, petroleum, and natural gas burning power plants with non-CO2 emitting power plants like nuclear, solar, wind, wave, hydraulic, and geothermal. à ¯Ã ¿Ã ½ Reduce the amount of paper and other carbon-rich discards that go to landfills, which generate CH4 by source reduction, reuse, recycling, and composting and/or mulching of organic discards. à ¯Ã ¿Ã ½ Control industrial plant greenhouse gas emissions. à ¯Ã ¿Ã ½ Prevent and control forest and agricultural fires that generate CO2. à ¯Ã ¿Ã ½ Replace internal combustion vehicle, tools, and power sources with electrical, compressed natural gas , and hydrogen sources. à ¯Ã ¿Ã ½ Recover greenhouse gases, such as from landfills, for reuse and treatment prior to release to the atmosphere. à ¯Ã ¿Ã ½ Improve the greenhouse gas sequestering mechanisms of the vegetative cover by restoring and enhancing landscape trees, forests, wetlands, gardens, and agricultural practices. Do we have a reason to be optimistic? We have reason to be cautiously optimistic about climate protection. Human history is full of examples where we learned from our mistakes, misfortunes, or undesirable trends. The agricultural revolution of the 18th century, the discovery of bacteria in the 19th, and the invention of vaccines in the 20th are some of the examples of what humanity can achieve when challenged with a seemingly unsolvable problem. True, we must overcome several hurdles, the resistance of political and profit-centered structures which have short-term benefits in an economy based on carbon fuels. But these barriers can be overcome in the 21st century through education and promotion, successful cases, and the inherently superior economics of a sustainable and renewable energy and resource based society. We will need political leadership at all levels to make it happen.
Sunday, September 15, 2019
Nickel And Dimed Essay
You must create a dialectical journal with fifteen (15) entries. I want five (5) entries for each section. I expect a thorough analysis of the devices/strategies identified in the text. Points: 90 Part II Create a monthly budget for a single parent with one child household living in the DMV area making minimum wage. You are to research the necessary information. You must include the current minimum wage, living accommodations, child care, grocery, transportation, and any luxuries (jewelry, dinners at restaurants, a night on the town, etc.). I expect you to find an actual place to live and include their rental rates. If your expenditures exceed your income, you must compute what it would cost for only necessities and calculate the minimum amount of money you must earn to meet those needs. Your research information may be submitted in chart or graph form. You must cite your sources using APA style!! Points: 40 Part III Choose one of the following prompts to write an effective 2 full page double spaced 12â⬠font AP level essay. 1. In ââ¬Å"Evaluation,â⬠the final chapter of Nickel and Dimed, Ehrenreich observes: Some odd optical property of our highly polarized and unequal society makes the poor almost invisible to their economic superiors. The poor can see the affluent easily enough-on television, for example, or on the covers of magazines. But the affluent rarely see the poor or, if they do catch sight of them in some public space, rarely know what theyââ¬â¢re seeing, since-thanks to consignment stores and, yes, Wal-Mart- the poor are usually able to disguise themselves as members of the more comfortable classes.
Saturday, September 14, 2019
Philadelphia family Essay
Born in 1856 into a wealthy Philadelphia family, Taylor disappointed his parents by working in a metal products factory, first as a machinist and next as a foreman. Shocked at the factoryââ¬â¢s inefficiency, and the practice of its skilled workers of purposely working slowly. As an engineer he was more interested in the practical outcome and not the psychology Taylor proposed solutions that he believed would solve both problems. By studying the time it took each worker to complete a step, and by rearranging equipment, Taylor believed he could discover what an average worker could produce in optimum conditions. The promise of higher wages, he figured, would create added incentive for workers to exceed this ââ¬Å"averageâ⬠level. Taylorââ¬â¢s time-and-motion studies offered a path away from the industrial wars of a century ago. Now what was needed was a way to apportion the wealth created by manufacturing enterprises. Taylorââ¬â¢s answer sidestepped the class struggle and interest group politics. He believed his principles would create a partnership between manager and worker, based on an understanding of how jobs should be done and how workers are motivated. These workers are motivated by money. He believed a fairs day work deserved a fair day bonus. He thought keeping his workforce happy would keep them producing at a high quality. He died in 1915, whilst on a speaking tour in the mid west he contracted influenza, he was admitted to hospital and celebrated his 59th birthday there and died the next day. Taylorââ¬â¢s second and third theory is used in the McDonalds. The McDonalds ethos is that the food preparation must be done to specific instructions. For instance the fries must be cooked for a 3 minutes at a temperature of 175o, then the buzzer tells the employee to take them out and salt them. Throughout all McDonalds are a series of dedicated, purpose-built machine for producing milkshakes, toasting buns and squirting chocolate sauce and much else. After 150 years this is the most active period working in industry, F W Taylor would feel very much at home ordering a Big Mac. The biggest person that Taylorââ¬â¢s theoryââ¬â¢s influenced was Henry Ford. Henry Ford was the first person to try mass production and it was a massive success. Taylorââ¬â¢s practices were first used in 1911 in the factory; by 1913 Ford had introduced a conveyor belt system and had achieved the ultimate Taylorite idea. This method was also used in Nazi death camps. They did not plan whom they would kill until the day they did it. Both Mussolini and Stalin both used his techniques during their communist uprisings. Taylor also wrote many books of these the most famous is ââ¬ËThe Principles of Scientific Managementââ¬â¢ he wrote this in 1911. He split the book into two chapters the first ââ¬Ëthe fundamentals of scientific managementâ⬠and the second ââ¬Å"The principles of scientific managementâ⬠. In the first chapter he stated that the principal object of management should be to secure the maximum prosperity for the employer, coupled with the maximum prosperity for each employee. In the second chapter he stated that people should be told what to do and how they do it. They should be motivated by a money incentive. Before Taylor, skilled workers chose their own methods of work, but after Taylor workers were far more likely to have limited, repetitive tasks and were forced to work at a pace set by their manager. To maximise efforts of workers Taylor introduced an incentive system known as a differential piece-rate. This offered a meagre payment per unit produced. 2p per unit for the first 500 per day 5p per unit all those above 500 per day The threshold was set a t a level which those producing barely 500 received barely a living wage. To make 700 was a great incentive, as you would earn double what you would at the 500 mark. But the workers in many places resented this theory that the theory was abandoned soon after introduction. Problems with Taylorââ¬â¢s methods With Taylorââ¬â¢s notion of a ââ¬Ëquickest and best wayââ¬â¢ for all workers does not take into account individual differences. There is no guarantee that the ââ¬Ëbest wayââ¬â¢ will suit everyone. Also some people naturally will be able to work faster than others creating a disadvantage for those he is not so fast. Taylor also viewed people as machines, with financial needs, than as humans in a social setting. People felt pressured and did not like being treated this way. He also overlooked the fact that some people work for other reasons than money. In a financial survey in 1982, a large sample of British people were asked whether they would carry on working if they financially did no need to. Nearly 70% of men and 655 of women said they would. Taylorââ¬â¢s Core values The rule of reason, improved quality, lower costs, higher wages, higher output, labour management, co-operation, experimentation, clear tasks and goals, feedback, training, stress reduction and the careful selection and development of people. He was the first to present a systemic study of interaction an d job requirements, tools, methods and human skills, to fit people into jobs both psychologically and physically, and to let data and facts do the talking rather than prejudice, opinions or egomania.
Subscribe to:
Posts (Atom)