Tuesday, January 28, 2020

Principles of Time Management Essay Example for Free

Principles of Time Management Essay Time is one of the most difficult resources to manage. You can not take back what is already lost, you can not renew the times that you missed. Moreover, it is one of the measures that all men are created equal because everyone is just given 60 minutes in an hour and 24 hours a day. In our fast paced world where everything seems to run ahead of you and you just have to chase time after time to accomplish things, you need a real good time management. Ecclesiastes chapter 3 in the Bible talks about time for everything. â€Å"There is a time for everything, and a season for every activity under heaven,† states in the first verse. This chapter alone teaches or urges people to set a time for everything to better manage time. There are a lot time management principles that we can suggest to a person however, it would be up to the individual to make the principles work. Dr. Jan Yager (1999) outlined seven principles in the book â€Å"The 7 Principles of Creative Time Management.† These include: Being active not reactive, setting goals, prioritizing actions, keeping focus, creating realistic deadlines, doing it NOW and balancing life. The D-O-I-T-N-O-W Principle states the following: Divide and conquer what you have to do. Break big tasks into little tasks and give each part of that task a realistic deadline. Organize your materials, how you will do it. Ignore interruptions that are annoying distractions Take the time to learn how to do things yourself. Now, not tomorrow. Dont procrastinate. Opportunity is knocking. Take advantage of opportunities. Watch out for time gobblers. Keep track of, and in control of, how much time you spend on the Internet, reading and sending e-mails, watching TV, or talking on the phone. Before you know how to manage your time, you should first know what time is it. It is not telling the time in your watch but knowing the right thing to do at the right and proper time. However, you should also get a sense of time by tracking your watch. You can take control of your whole day if you know what time it is and what you should be doing on those times. Other than you good watch, you should still use other tool. One of which is a planner. Sometimes you can not memorize everything that you need to do in a day or in a week. Sometimes, you can not know if you have already done one job if you do have your list and you may result in doing it again; thus wasting your time. Grab a planner and make you checklist for the day. A planner use wisely will help you keep track your activities and help you evaluate regarding having balance. When you keep track on all your activities, you have a way to evaluate throughout the week and make it better if necessary. If you have the tools above and you still have the problem in managing your time, you need to identify the problem. Do you procrastinate? Do you always entertain interruption and waste your time in unproductive work?   Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚   Time management may be difficult but as the Bible says, make time for everything. Do not focus on how to manage

Monday, January 20, 2020

Government Surveillance in the Digital Age Essay -- Privacy in the Dig

Government Surveillance in the Digital Age Imagine walking along a busy street in the middle of a sunny day. Also imagine that someone is following you around, videotaping everything you do. Disturbing thought? Even more disturbing is the fact that the United States government is already doing this, and it's perfectly legal. According to Robert Trigaux, a reporter for the St. Petersburg times, until August of 2014, in Ybor City, Florida, the Tampa Police Department used fourty-six surveillance cameras that scanned faces of all people walking around the entertainment district. These surveillance cameras captured facial images and then compared them to a police database of known felons. This same surveillance system was also used during the Tampa Bay Super Bowl at the Raymond James Stadium, and other cities are attempting to install such a system. However, even though the cameras are used in public places, they still represent a large violation of privacy. Also a violation of our privacy is the government's usage of the Carnivore Internet surveillance system that can track all of a person's online activity. The FBI not only has the capability to do so, but in many cases it can lawfully enter a person's home and alter or even steal information form his or her computer, all without the knowledge of the owner of the computer. The government's ability to gather personal information on its citizens is similar to methods of surveillance in the novels The Handmaid's Tale, by Margaret Atwood, and 1984, by George Orwell. In order to prevent the extreme cases of surveillance presented in these novels, it is the public's responsibility to remain alert to new developments in law enforcement so as to prevent an unreasonable s... ...ore/000724fbi.shmtl>. Herdy, Amy. Tampabay: They made me feel like a criminal. 8 Aug. 2001. St. Petersburg Times. 2 Nov. 2013. . Searching and Seizing Computers and Obtaining Electronic Evidence in Criminal Investigations. July 2012. Computer Crime and Intellectual Property Section. 26 Oct. 2013. . The Nature and Scope of Governmental Electronic Surveillance Activity. Sep. 2001. Center for Democracy and Technology. 27 Oct. 2013. . Trigaux, Robert. Tampabay: Cameras scanned fans for criminals. 31 Jan. 2001. St. Petersburg Times. 2 Nov. 2003. . Orwell, George. 1984. New York: Signet Classic Printing, 1950.

Sunday, January 12, 2020

Importance of Biogas plant Essay

The energy prospect is generally assessed on the basis of available commercial sources of energy i.e., fossil fuel like gas, coal, oil etc. Worldwide, there is a major transition underway in the energy sector. Biogas can be a potential source of renewable energy, Residues from biogas also proven as a significant source of organic fertilizer. If there is proper policy and implementation, Bangladesh’s energy crisis and organic fertilizer demand can be control through biogas plant. 1. Introduction By 2020, the world is throwing into turmoil as demand for energy begins to greatly exceed the supply – crippling many economies and triggering widespread social unrest. Many countries in the West may experience a decline in living standards – with oil rationing and conservation measures introduced by governments and substantial reductions in travel, tourism and aviation. The crisis plays out for nearly two decades, gradually being resolved by a switch to renewable energy and alternative fuel technologies. In Bangladesh context, neither the decision-makers nor the experts pay due importance on proper extraction and use of renewable energy. Here grater population is using natural gas and imported oil, with the present rate of consumption, natural energy resources like gas will be exhausted shortly and this is high time to derive policy and practice for exploration and use of alternative renewable sources if we want to meet energy crisis in near future. Biogas has been fou nd to be a proven renewable energy option. 2. Biogas Biogas, a cheap secondary renewable energy, is a gaseous fuel obtained from biomass by the process of anaerobic digestion or fermentation. Biogas fermentation is the process by which organic materials such as human or animal excreta, domestic wastage, agricultural wastage etc, are degraded, by huge quantities of various microbes of different functions, under anaerobic conditions, to yield methane (about 55-70% content), carbon dioxide (about 3045% content) and low amount of other gases in the end. Biogas can be used as a vehicle fuel or for generating electricity. It can also be burned directly for cooking, heating, lighting, process heat and absorption refrigeration. Cattle dung, agricultural residue, poultry dropping, water hyacinth, human excreta may be used as raw materials for biogas plants. A typical biogas plant consists of a digester in which the slurry (dung mixed with water) is fermented; an inlet tank used to mix the feed and let it into the digester; a gas holder/ dome in which the generated gas is collected; an outlet tank to remove the spent slurry; distribution pipelines to take the gas into the kitchen. 3. How Biogas produced Biogas is produced by the anaerobic digestion or fermentation of biodegradable materials such as biomass, manure, sewage, municipal waste, green waste, plant material, and crops. Biogas comprises primarily methane (CH4) and carbon dioxide (CO2) and may have small amounts of hydrogen sulphide (H2S), moisture and siloxanes. The gases methane, hydrogen, and carbon monoxide (CO) can be combusted or oxidized with oxygen. This energy release allows biogas to be used as a fuel. Biogas can be used as a fuel in any country for any heating purpose, such as cooking. It can also be used in anaerobic digesters where it is typically used in a gas engine to convert the energy in the gas into electricity and heat. Biogas can be compressed, much like natural gas, and used to power motor vehicles. 4. Advantages of Biogas Technology: A potential source of renewable energy. A source of improved organic fertilizer. A mechanism for wastage management. Save environment. 4.1 A potential source of renewable energy. Energy is one of the basic ingredients required to alleviate poverty and socio-economic development. The energy prospect is generally assessed on the basis of available commercial sources of energy i.e., fossil fuel like gas, coal, oil etc. Worldwide, there is a major transition underway in the energy sector. It is happening due to the following three major reasons: (I) A decline in fossil fuel availability, their predicted gradual extinction in the next Few decades and the resultant price volatility due to demand-supply gap. (ii) The need to drastically cut global emissions for mitigating climate change (80% Reduction by 2050). (iii) The need for energy security. In Bangladesh efficient utilization of renewable energy resources is yet to assume commercial dimensions and hence rational policy dissemination on renewable energy usage is essential. The renewable energy includes solar, wind, biogas and biomass; hydro, geothermal, tidal wave etc. Despite of above scenario biogas source can be use as a potential source of renewable energy. 4.2 A source of improved organic fertilizer. Bio product of biogas plant is improved organic fertilizer. This fertilizer contains organic component like Nitrogen, Phosphorus, and Potassium &Micro Nutrients: Nitrogen: Producing compost fertilizer Nitrogen losses calculated 50 % in every three months at the time of aerobic fermentation, on the other hand 10 % losses calculated while producing from biogas residues – Figure- 2 shows, Nutrition’s comparison between Chemical fertilizer and biogas residues from Biogas plant (Production in percentage): Biogas can outline sustainable land use. Reduced use of fertilizers and insecticides compared with lands used for row crops, protection of riparian areas, and erosion protection for sensitive land areas. 4.3 A mechanism for Wastage management Municipal waste is the abandoned materials which have been thrown away after use in daily life in the urban area. Municipal waste generally compose of food scrap, packaging materials, used plastic materials, tire etc. Due to the increasing growth of urban population in Bangladesh this municipal waste is getting high concerns from the management perspective. Also the management of this huge amount of waste is a worth of large expense. The huge amount of waste in the urban areas of Bangladesh due the rapid growth of population can be a potential source of biogas production. The calculation shows that by adopting active biogas collection procedure in the major landfills of the main cities can produce 319989.36 KWh of electricity. Recommendations are given to develop this technology within minimized cost and ensuring environmental safety. The unhygienic dumping zones in every city could me turned into a potential source of renewable energy by adopting active gas collection technology instead of spending money to manage the waste in that areas and keeping a huge land area unused. To explore the untouched potential of biogas source of municipal waste following actions are recommended: -To attract the investment in this sector government should demonstrate one pilot project with the help of foreign Development partners. -Private sectors should be given incentives to invest in biogas from municipal waste. -The technologies used in the countries successfully adopted waste to electricity system should be imported with necessary subsidies. -To facilitate the consciousness media should be used properly. 4.4 Save Environment. The greenhouse effect is caused by gases in the atmosphere (mainly carbon dioxide, CO2) which allow the sun’s short wave radiation to reach the earth surface while they absorb, to a large degree, the long wave heat radiation from the earth’s surface and from the atmosphere. Due to the â€Å"natural greenhouse effect† of the earth’s atmosphere the average temperature on earth is 15 °C and not minus 18 °C. The increase of the so called greenhouse gases which also include methane, ozone, nitrous oxide, etc. cause a rise of the earth’s temperature. The World Bank Group expects a rise in sea levels until the year 2050 of up to 50 cm. Flooding, erosion of the coasts, Stalinization of ground water and loss of land are but a few of the consequences mentioned. Until now, instruments to reduce the greenhouse effect considered primarily the reduction of CO2-emissions, due to their high proportion in the atmosphere. Though other greenhouse gases appear to be only a small portion of the atmosphere, they cause much more harm to the climate. Methane is not only the second most important greenhouse gas (it contributes with 20% to the effect while carbon dioxide causes 62%), it has also a 25 times higher global warming potential compared with carbon dioxide in a time horizon of 100 years. The Bio gas plant effectively reduces the amount of methane directly released into the atmosphere, by trapping it and facilitating its use as a green fuel. After burning, methane only releases harmless gases in air. Other uses of biogas: With the help of biogas we can drive gas generator to produce electricity in rural area. We can use gas incubator to produce poultry chicken from egg. We can use gas lantern by using bio gas in night time in village area. Hotel and restaurant can use biogas for cooking purposes by using the residue of vegetable and food waste. We can drive gas hitter for hitting water during winter season. Different poultry and dairy farm can mitigate their need of gas by using their own animal excreta. 5. Biogas significance in Bangladesh As a country of large population and for the convenient environment Biogas might be the potential source of energy. Though recently government has initiated some pilot project with the help of some foreign NGOs, but the utilization of the full potential is yet to reach. The main problem is lying in lack of public awareness and social prejudices. Government should supply the needed equipments to the private organization with less expense to encourage the involvement in this sector. 5.1 Types of Biogas Digester invented by Bangladesh government organization’s LGED: There are three types of basic designs of biogas plants tried in Bangladesh: (I) Floating cover digester: It works on the principle of constant pressure, changing volume. The digester, cylindrical well, commonly made from brick and cement, is covered with a floating steel cylinder with an open bottom (Fig. A). As the cylinder has a constant weight, it moves up when gas production is higher than consumption and comes down under the reverse conditions. (ii) Fixed cover digester: It works according to the principle, constant volume, changing pressure. When the rate of gas production is higher than that of gas consumption pressure inside the digester rises and expels some digester contents into the outlet compartment. When the consumption is higher than production, pressure inside the digester falls and the expelled materials in the outlet compartment run back to the digester (iii) Plastic Cover digester: A long cylindrical polythene/PVC bag, half-buried longitudinally in the ground, is fed with fresh cow-dung slurry at one end and discharged at the other. With the formation of gas, the bag swells like a balloon and the gasis led out to the point of use through a pipe by putting pressure on the balloon form outside In early 80’s, the floating type design was used for biogas plant. But dueto corrosion of the steel dome, the gas leakage problem happened and it could not be removed. Later on BCSIR tried with fixed done type desig n and it has been successful in all biogas plants. The plastic bag type designs not used in Bangladesh it is used in China. In this project, the fixed dome type design has been proposed. 5.2 Availability of biomass in Bangladesh for energy generation. The total annual generation and recoverable amounts of biomass in Bangladesh are about 165 and 9 MT/year respectively. Agricultural residues represent 48% of the total recoverable biomass followed by 23.9% from animal wastes and poultry droppings. In 2006, the biomass consumption for energy in Bangladesh was about 350 pico-Joules (PJ). At an average annual growth rate of 1.3%, the consumption in 2010 will be about 370 PJ. The total recoverable biomass energy of the country in 2006 was about 1250 PJ from which about 820 PJ of biomass energy was available for electricity generation. On the other hand, the total biomass energy consumption in 2006 was about 473 PJ. Assuming the same average annual growth rate of 1.3%, the biomass consumption in 2010 will be about 286 PJ. Therefore, the amount of biomass energy available in 2006 was 777 PJ, which is equivalent to 216 terawatt-hours (TWh). According to these two estimates and considering that the consumption of biomass for non-energy purposes is negligible, the annual available biomass energy potential for electricity generation in Bangladesh is in the range of 216- 250 TWh. 5.3 Present biogas Generation Rate: According to Infrastructure Development Company Limited (IDCOL) sources, Bangladesh has 215,000 poultry farms and 15,000 cattle farms where electricity could be generated by establishing biogas plants. So far, 35,000 biogas plants have been established for the production of gas for cooking purposes in the rural areas. IDCOL has set a target of establishing 60,000 biogas plants by 2012, each of which could produce, on average, 94.22 square feet of gas. At present, 3.3 million square feet biogas is being produced in the country. 5.4 Affordability Biogas is a proven technology; there is no risk of failure if proper design and supervision can be ensured. Most of the micro finance institutions are now convinced and took decision to provide loan for the construction of Biogas plants. Most of the urban poor can not afford gas connection as it costs Tk. 200 to Tk. 400 per month. Instead they can install Biogas plants with. Bank loan and repay the loan out of their fuel savings ‘domestic’ size Biogas plant of 100 cft capacity cost Tk. 15,000 to Tk.18, 000 and can meet the cooking energy need for a five- member family. Impact on health and environment: Large scale bio energy development in Bangladesh could bring significant environmental benefits. Sustainable bioenergy development could: Reduce higher level of deforestation. Reduce net greenhouse gas emissions. Improve air quality and reduce acid deposition. Improve soil quality and reduce erosion. Reduce land filling by adding value to residues. 5.5 Few case study: Biogas plants in different institution: LGED has constructed 61 Biogas plants in different educational institutes, orphanages, hospitals, school/college hostels for solving the sanitation problems and getting biogas as an alternative energy source. One of these important plants is in Faridpur orphanage. There are 250students and staff in Faridpur orphanage. For their night soil disposal they needed to construct a septic tank for 250 users with Tk.60, 000. LGED in mid 1992 constructed a Biogas plant with Tk. 16,000which served the purpose of septic tank as well as a source of gas and fertilizer. This has reduced the investment by Tk. 34,000 and the mission has been saving Tk. 25,000 against fuel cost per year. Case 1: Ganaktuli Sweeper colony, Dhaka: There are five buildings for sweepers and 40 families reside in each building. The latrines of the buildings were not connected with any septic tank or sewerage system. Previously, night soil was passing through surface drain creating health hazard. To connect the latrines of building No-I to the nearby sewerage line Tk. 60,000 and to construct a septic tank for 221 users of the building Tk. 50,000 were necessary. Instead, LGED constructed a Biogas plant for Tk. 20,000 in 1993which is working till today without any problem giving sufficient gas to meet fuel need of all families of 1 building. There was some maintenance for leakage and Tk. 300 was spent. Observing the performance of the plant, residents of other 4 buildings created pressure on the city corporation to construct similar plant in those buildings. By now Biogas plants have been constructed in all the remaining 4 buildings. Case 2: ‘Ecological Village’ Amgram/Uttar Hogla in Madaripur: LGED took up ‘Ecovillage’ project on experimental basis as pilot programme with the objectives to make the villagers aware about environment and technology, create clear, healthy and acceptable environment in the villages and inspire the people around the villages to accept such project. There are 662 people in the village in 123 families. Besides other socio economic activities, the following facilities were also provided: There was no latrine in the village and 95latrines were constructed. As an alternative source of energy 15  Biogas plants were installed, three persons were trained in the construction of Biogas plant. The Biogas plants are providing energy input to the villagers. 6. Conclusion: Different implementing agencies in Bangladesh, which are active in promoting bio gasification technology, are not paying sufficient attention to effective and focused groupcollaborative R&D aimed at renovating, optimising and improving the design for adaptation to local conditions. Limited R&D facilities and capabilities and lack of co-ordination among the researchers and implementing authorities may well pose a major stumbling-block towards the success of this endeavour. Moreover, the follow-up action program is also very limited. Sometimes, the plant-owners do not get proper technical guidance for the operation and maintenance of their plants. Thus, the successful application and extension of this option depends on: Institutional measures and close collaboration between sectors involved. This should include, among others, provision for soft loans and/or subsidy; availability of standard prototype for design and construction and site-specific maintenance guidelines; meaningful public involvement which should aim at passing relevant information of this technology to the community to increase awareness and promote acceptability of this technology; Accurate calculation of the benefits of this technology. Biomass could play a role in reducing C02 emissions in both of these sectors. As the slurry remains in the digester for 30-40 days in anaerobic condition, the effluent becomes pathogen free and the output is smell-free combustible gas and organic fertilizer which is improving the environment and preventing diseases. At present Bangladesh meet 46.15% of its energy need by agricultural residue, 10.5% by cow dung, 12.9% by fuel wood and 33% by tree residue. This means that to meet our energy need we are depriving, ourselves from organic fertilizer and creating environmental imbalance by  deforestation. One pragmatic estimate puts that the use of biogas will reduce energy deficit at least by 15%. Reference: Bangladesh Power Development Board. Annual Report of 2006-2007. Dhaka, Bangladesh: BPDB, 2008. Available www.bpdb.gov.bd/download/Annual%20Report-10.pdf Biogas Digest,Vol 1, Information and Advisory Service on Appropriate Technology (ISAT),GTZ (PREGA), Bangladesh Country Report,2003. Obozov, A.D. and Asankulova, â€Å"Biogas in Kyrgyzstan†, Applied Solar Energy, 2007, Vol. 43, No. 4, pp. 262–265 Waste Concern Database, http://www.wasteconcern.org/database.html M. Alamgir and A. Ahsan,† Municipal Solid Waste and Recovery Potential: Bangladesh Perspective† ,Iran. J. Environ. Health. Sci. Eng., 2007, Vol. 4, No. 2, pp. 67-76 S. Karapidakis and Anna Tsave,â€Å"Electric Power Production by Biogas Generation at Volos Landfill in Greece† Applied Solar Energy, submitted for publication Dr.M.Eusuf, Technological Feasibility of CDM Project Dhaka City Solid Waste.NTE.Bangladesh JICA (2004) Solid Waste Management Project of Dhaka City Corporation, Final Report of JICA Expert, Bangladesh. Available: www.dhakacity.org/cleandhaka/†¦/CleanDhakaMasterPlanMain.pdf ICAR paper (report issued by the Indian Council of Agricultural Research, New Delhi) http://www5.gtz.de/gate/techinfo/biogas/framecond/environ.html Winrock International, Nepal Biogas Support Program (BSP) Nepal, Accessed from google on 10th September 2012. Official website of Renewable energy information network, Bangladesh. Available at: http://www.lged-rein.org Accessed on 12 September 2012. Biogas program Grameen Shakti http://www.gshakti.org/index.php?option=com_content&view=article&id=60&Itemid=6 4 Accessed on 12 September 2012. Bangladesh electricity production from renewable sources. Available at: http://www.indexmundi.com/facts/bangladesh/electricity-production-from-renewablesources. Renewable Energy Prospects & Trends in Bangladesh Presented by-Mazharul Islam. Bangladesh Power Development Board. ZakariaMahbub, Husnain-Al-Bustam, SuvroShahriar, T.M. IftakharUddin, AbrarSaad, â€Å"International Journal of Engineering Research and Applications (IJERA)†, Vol. 2, Issue 2, Mar-Apr 2012, pp.896-902. Md. M. Biswas, Kamol K. Das, Ifat A. Baqee, Mohammad A. H. Sadi, Hossain M. S. Farhad, â€Å"Prospects of Renewable Energy and Energy Storage Systems in Bangladesh and Developing Economics†, Global Journal of researches in engineering , Volume 11 Issue 5 Version 1.0 July 2011. Website of Wikipedia on Renewable energy. Available at: http://en.wikipedia.org/wiki/ Electricity_sector_in_Bangladesh#Renewable_energy Md. ZunaidBaten, EmranMd.Amin, AnikaSharin, Raisul Islam, Shahriar A. Chowdhury, â€Å"Renewable Energy Scenario of Bangladesh: Physical Perspective†, International Conference on the Developments in Renewable Energy Technology (ICDRT) 2009, Dhaka, Bangladesh. Mir NahidulAmbia, Md. Kafiul Islam, Md. AsaduzzamanShoeb, Md. Nasimul Islam Maruf, A.S.M. Mohsin, â€Å"An Analysis & Design on Micro Generation of A Domestic SolarWind Hybrid Energy System for Rural & Remote Areas-Perspective Bangladesh.† 2010. Website of Wikipedia on biogas. Available at: http://en.wikipedia.org/wiki/biogas. Potential of micro hydro power units in Bangladesh. Available at:http://www.lged-rein.org/ How wind turbine works. Available at:http://www.energymatters.com.au/renewableenergy/wind-energy

Saturday, January 4, 2020

Food In Japan Essay - 771 Words

Executive Summary This report is a political, economic, social, technological, and environmental and legal–(PESTEL) report carried out to assess the viability of the opportunity market SAFOLS ready to eat tuna meals in Japan. The South Australian Fisherman’s Cooperative Limited (SAFCOL) is small medium sized enterprise (SME) in the seafood industry based in South Australia, Japan is an island nation comprised of four principle islands and number smaller ones, a distance of 2,400 kilometers from the East Asian coastline (Scholastic, 2016). The principle opportunity is the fact that Japanese companies who are looking for overseas suppliers to counter local competition (Austrade, 2016; Political Monitor, 2017) The country has a number of†¦show more content†¦The overall recommendation is that an entry plan be made to take advantage of this opportunity. Report Background This report is a political, economic, social, technological, and environmental and legal–PESTEL report carried out to assess the viability of the opportunity market SAFCOL’S ready to eat Tuna meals in Japan by The South Australian Fisherman’s Co-Operative Limited (SAFCOL). SAFCOL was begun in 1945 by South Australian Fishermen endeavouring to sell their catch (SAFCOL, 2016). SAFCOL produces, distributes, imports, canned seafood and pet food products, include tuna, salmon, mussels and sardines and has about 80 employees (Bloomberg, 2017). SAFCOL, markets its products throughout Australia in supermarkets and speciality stores, it has broadened its product range to include ready to seafood meals (SAFCOL, 2016; Bloomberg, 2017). SAFCOL supplies a wider market than other Australian seafood including: Australia, New Zealand, the Middle East, Slovenia, Chile, Hong Kong, China, Thailand, Malaysia, Greece, Canada and the USA (SAFCOL, 2016). SAFCOL is looking to broaden it s export base even further by exporting to Japan an island nation located in East Asia with a population of 128 million people (Griffin Pustay, 2015, p. 61). Japan consists of four principle islands, in addition to number minor ones, approximately 1,500 miles (2,400 kilometers) from the East Asia coast (Scholastic, 2016). The principleShow MoreRelatedDiscuss the Similarities and Differences Between Any Two Societies. in Your Answer, Make Reference to the Role of Cultures, Norms, Values and Inequality in Social Organization.1201 Words   |  5 Pagessocial organization. There are many similarities and differences between the cultures of Japan and Britain, this essay will look at some of these including religion, education, norms, values and inequalities in their social organizations. According to Google’s public data there are 127, 817, 277 people living in Japan compared to 62, 641, 000 living in Britain. 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