Wednesday, September 11, 2019
Floating cities vs colonial America Essay Example | Topics and Well Written Essays - 250 words
Floating cities vs colonial America - Essay Example Most of these people are also Native Americans. The differences between them include the fact that liberalists are mostly rich citizens who have well-established businesses with no affiliation to the government. They do not work for the government and they want to break away from it. The leaders of the American revolutionary war work for the government through the military. They support the government and are against anyone who opposes it, including the liberalists (David, p. 12). I do not think that the colonial cities offer the same opportunities that colonial America offered citizens of other nations. This is because the founders of these floating cities want to be liberalized and are motivated by breaking as far away from the government as possible. They want to offer their people greater opportunities that the colonial America never offered to its people (Edward, p. 4). The classes of people going to participate in the floating cities are an important factor to the political development of these cities. This is because most of the people sponsoring the development of these cities are the wealthy people such as landowners, businessmen and other high ranking individuals. Therefore, this is the select group of people that can be able to belong to the floating cities. The ordinary poor person cannot afford to have a say in these cities unless they are simply taken there to be passive citizens (Lawrence & Robert, p 105). I think that these floating cities would turn out the same as any other nation politically. According to the theory of social contract by Thomas Hobbes, individuals will only unite into common political societies when they mutually consent to accept duties and abide by common rules. The founders of these floating cities are all motivated by the disgruntlement from the government. According to this theory, a rational individual would easily give up his or her rational freedom voluntarily so as to enjoy the
Left brain vs right brain thinking Essay Example | Topics and Well Written Essays - 750 words
Left brain vs right brain thinking - Essay Example The left hemisphere is usually associated with symbolic processing as well as rational thinking while the right hemisphere is for art, intuition and creativity. Information from the Center for Educational Research and Innovation also points out that the left brain is verbal, logical and analytical, while the right brain is more emotional, holistic, synthesizing and visuo-spatial in its operations (Neuromyth 6, 2013). The proofs for the asymmetry of the human brain are not only scientific but also a result of a long period of study of biology and evolution. In fact, according to Hellige (1993), asymmetry in the human brain affects behavior, although, because of a lack of substantial evidence, this proof still sounds more like mere speculation. Moreover, he adds that other species of animals also have asymmetries too, thus there seems to be no reason why human beings should not exhibit the same quality. Another thing is that sometimes the theory of asymmetry is contradicted by others because it seems that differences in right and left brain functions are only pronounced in certain individuals but are weak in others. However, the fact is that individuals differ in their asymmetry or in the way the right and left hemispheres interact. Perhaps, for some it is more pronounced and for others it is not that obvious, especially among ââ¬Å"whole-brainedâ⬠people, or those with more or less balanced functioning of both brain hemispheres (Oflaz, 2011). Another reason why asymmetry is sometimes not obvious is that it gradually develops and evolves throughout oneââ¬â¢s lifetime and throughout evolutionary history. Moreover, another reason why sometimes the differences between the two brain hemispheres are unnoticeable is that asymmetry is affected by several biological and environmental factors from the moment the brain forms in the fetal stage up to
Tuesday, September 10, 2019
The Country of Asia Research Paper Example | Topics and Well Written Essays - 1000 words
The Country of Asia - Research Paper Example In India, as majority of the states possess different culture of people speaking different languages, dealings in business often becomes difficult. However, most of the business transactions in the global circuit are carried out in English language. One of the major differences of business culture between the two countries is the process of operation in business dealings while finalizing all the aspects of business. The business culture of America revolves around monetary transactions and solving problems along with finalizing dealings (Fox, 2011). The transaction of business carried out between two countries can be demarcated on the basis of greetings and introductions. From the Indian point of view, it can be stated that greetings are conducted among officials for transaction in business or in meetings, by saying ââ¬ËNamasteââ¬â¢. On the other hand, Western countries particularly in the US, men and women use handshakes as a mode of greeting along with using generally the firs t name of a particular individual irrespective of the position he/she possesses in the organizational hierarchy (Jhunjhunwala, 2012). In the context of taking food items during the period of business meetings, teas are generally offered for drinking purposes in India. While both non-alcoholic and alcoholic drinks are offered while conducting business meetings in the US. It is also been observed that there are no arrangements in terms of seating for informal meals, but for formal meals it can be signified as a custom in India (Martin & Chaney, 2008). The nature of meetings conducted in the two nations is not similar due to individualism and collectivism dimensions present in US and India respectively. Give and take policy in business is given... From the above description, it can be comprehended that business culture of both nations are in certain instances distinct in the context of business perspectives. It is been viewed that more essence is given to time by the US while conducting business dealings than India. Moreover, in India certain traditions and customs are strictly adhered while conducting business transactions. This report makes a conclusion that the nature of meetings conducted in the two nations is not similar due to individualism and collectivism dimensions present in US and India respectively. Give and take policy in business is given much preference than discussing in organizations on an open basis in the US. On the other hand, in India, meetings for business purposes are held for avoiding conflict situations among employees in the organizations and for providing every one equal chance to show their talents in the productivity of business. However, major discussions usually occur through communication process on a one-to-one basis. In the context of attire and appearances, it can be stated that both nations are generally identical in their approaches, i.e. men wear a suit and tie combination, while women are dressed in pantsuit, especially during business meetings. The issue of gender differences is quite distinctive among the two countries. The illiteracy rate is higher in India as co mpared to the US, especially amid the female gender. Even in case of employment, segregation among men and women can be identified in India as compared to the US.
Monday, September 9, 2019
Assembly operation Assessment Assignment Example | Topics and Well Written Essays - 1000 words
Assembly operation Assessment - Assignment Example Further, it is imperative to note that in the contemporary business marketplace, new opportunities keep unveiling and new managers, equipped with different ideas, take over organizations that are also on the learning path. Therefore, the sufficient alignment of the organizational operations and managerial capabilities with the emerging forces seems to be the only way for organizations to optimize value from their operational endeavors. This paper seeks to assess the assembly operations of a digital camera company in light of its operational excellence and performance. Further, the paper will suggest necessary corrective actions in a bid to revise and properly align strategic goals towards the overall aims of the organization. As a conventional rule, the assembly operational capability of any firm in the digital camera industry should first and foremost conform to the rating requirements of the regulatory authority within the industry. Further, the company should also seek to strategi cally place itself in a better competitive quarter in relation to the production and assembly costs, quality of the cameras and the overall satisfaction of the ever changing customer needs. Organizations must further seek to provide responsive products and services that aim to fit in the changing consumption trends but which are also enabling the clients to optimize value of their expenditure. Thompson et al (2009), observes that in addition to executing strategic goals that aim to address all the competitive factors affecting the organizational market share, companies in the digital camera industry must be ready to assess their strategic options and make appropriate changes and corrections where necessary so as to sustain growth and development while satisfying the increasing demands of the customers (Thompson et al, 2009). From the assessment templates, it is evident that if the company continues with the current strategic policies without amendments, the overall cumulative unit v olume of cameras that it will assemble in the tenth year will be significantly below the desired quantity. This is in reference to the previous and current assembly capabilities. This is because the company is only able to produce cumulative unit volume of 1024 at the end of the fifth year, while the previous highest achieved volume is 917. However, the gap between the highest previously achieved and the cumulative unit volumes reduce significantly in the six year as is between 1045 and 1024. Further, the difference spreads to the negative in the projected year 10, when the company produces less than the highest achieved in the previous years. The trend is also evident from the results of the unit assembly that the company does entirely on in-house basis. The units increase to 1024 in the year 6 up from 917 in the year 5. However, the increase is not commensurate between the years 6 and 10 respectively and the company must assess the reasons behind the marginal decrease and implemen t mitigating operational approaches to help save the situation (Thompson et al, 2009). Moreover, the significant reduction in the number of overtime
Sunday, September 8, 2019
Newtons Laws of Motion Essay Example | Topics and Well Written Essays - 1500 words
Newtons Laws of Motion - Essay Example Several things are needed to be defined to understand this law. Firstly we talk about inertia. Inertia is an ability of matter to resist any change in its motion. For example when a person is sitting in a bus, he is moving with the same speed as that of bus. If brakes are applied suddenly by the bus driver, it is the inertia of a person's body that pulls him forward. The second thing that is important to understand is the concept of Net forces. A net force is the vector sum of all the forces being applied on a body. For example if two forces, each of 10 N, are applied on a body, one from the top and one from bottom then the body will not move in any direction. Since these forces will cancel out each other's effect and the net force on the body will be zero. Now if an object experiences any net force greater than zero it will change its state. A very common day example of this can be a car moving on an empty road. If you turn off the engine, the car will move to some distance and then stop. What is the reason behind this The car when moving is experiencing a force from its engine and some other forces such as friction from the road and air resistance. The car needs sufficient driving force from engine to counter the effects of air resistance and road friction. When the engine is turned off, the car will move because of the momentum it gathered due to its motion for some distance but a net force opposite to its direction of movement are being applied by road and air which will slow it down and will ultimately stop it. Same goes with a cold drink glass in a glass holder kept in a moving car. If a car is moving with the speed of 70 km/hr without any speed breaker and considering that the road is all smooth, the cold drink will not spill out of the glass but it will spill out in case of application of sudden brakes. The reason is simply that when the car was moving with a constant velocity, the drink in the glass was also moving with the same speed and in the same direction as that of car. But when brakes were applied suddenly and car stopped the drink still continued its motion which causes it to spill out of the glass because the force was applied to the wheel of the cars to stop them and not to the coffee. So, when no external force was applied to the drink it continued its motion till it spilled. In our everyday life we do many things that are good examples of First law of motion. Such as a carpenter or a wood worker: when he feels that the head of hammer has loosen its place from the wood of hammer, he hold the hammer from the middle and bangs its bottom on a hard surface to tighten it to its place. The phenomenon behind this is when he moves hammer at a fast speed downwards, every part of hammer is moving with it, but when the bottom hits the surface, still the head of hammer is moving with the same speed downwards and due to this it fixes itself on hammer. (Henderson T. 2004) Newton's Second Law of
Saturday, September 7, 2019
Hospitality Industry Questionnaire Essay Example | Topics and Well Written Essays - 750 words
Hospitality Industry Questionnaire - Essay Example Major role is to develop new ideas for creative events and recreational activities that would keep the customers interested and tempt him to experience events and go in for innovative recreational activities. Ensure safety and security for various stakeholders in the hospitality industry. Ensure that events and recreational activities are environment friendly and conducted within the parameter of defined government guidelines and ethics. They oversee the smooth front desk operation of hospitality industry and therefore, they should be of pleasant demeanor, well mannered and extrovert persons who can be trusted to act with discretion at all time. They should be highly motivated with good interpersonal and communication skills. They should exhibit exemplary leadership qualities and must possess innate sense of responsibility and accountability. F&B Manager must be knowledgeable, witty, enthusiastic, fun loving and creative. He or she should have leadership traits and ensure state of the art services in the field of F&B. They should also have strong organizational and communication skills. Degree in Hospitality Management with specialization in food and beverages is essential. Computer skills are also necessary. He should have minimum 2 years of experience in the F&B department of hospitality industry. He should have strong communication skills and managerial leadership qualities. He should also be tactful, patient and optimistic. His extrovert nature and persuasion skills should be extraordinary so that he is able to sell the various product and services of the hospitality industry. He should be used to working under stressful conditions and long
Friday, September 6, 2019
Construct and test an anemometer Essay Example for Free
Construct and test an anemometer Essay Readings 1-5 Results for calculated wind speed The anemometer will be able to measure to a degree of accuracy of two decimal places, giving it a resolution of 0. 01ms-1. This is because the least certain measurement of distance, the diameter of the anemometer was measured to two decimal places. This therefore restricts the accuracy of the anemometer to two decimal places when calculating wind speed. A calibration curve for potential difference against speed is now possible: When taking my results, I may find that I encounter wind speeds of over 2. 51ms-1. I predict that as the potential difference in mV increases, so will the rpm in a directly proportional manner, above 160 rpm. 80mv means an rpm of around 155 and a wind speed of 2. 51ms-1. The value for the rpm is the calculated mean from the 5 results taken. I can assume that for the amount of voltage involved in this practical, the relationship between rpm and speed will remain linear. Therefore, I am going to extrapolate the calibration curve, to give me values for wind speed that relate to higher potential differences being obtained. There will be a point where the relationship between the p. d and rpm will become non-linear. But I do not think that with the wind speeds I will encounter, this limit will be reached. An example of the kinds of rpm involved when the relationship between voltage and rpm may not be linear is when a similar type of motor is used in a motorised milk whisk, or model train. Both these motors are powered by 3v dc. This is a potential difference 75 times greater than produced by the motor turning at an average of 73 rpm. A wind speed 75 times greater than the wind speed for an average of 73 rpm is 89ms-1; this is around 200mph. This is very unrealistic, and the anemometer would not survive in such conditions. Therefore, I estimate that I will only encounter wind speeds at most, up to 18ms-1 (40mph). Up to this point I would suggest that the relationship between the potential difference and rpm would remain linear enabling me to calculate wind speed for potential differences of over 80mV. Results The table above shows the results obtained measuring the wind speed. I encountered several problems during the taking of the results. To obtain different potential differences, I needed to obtain different wind speeds. To do this I went to the sea front, and found different points along the sea front where the wind was blowing at different speeds. It was very difficult to accurately obtain a potential difference exactly equal to those recorded for long enough to read off the value for the datum at the same time. The wind source during the calibration was constant, and therefore fluctuations in the potential difference were minimised. As wind is not at all constant the task of recording the results was made harder. To record the results necessary to determine the accuracy of the anemometer, I found different wind speeds along the sea front and as accurately as possible gained a potential difference as close to those stated in the table. At the same time I measured the wind speed that created this potential difference using the datum. The results are not consistent with the findings from my calibration. Therefore I am able to analyse these results and the factors which contributed to the inaccuracy of the anemometer that I devised. As I predicted I encountered wind speeds fast enough to produce a potential difference greater than 80 mV. Using calculated data, I would have predicted that the corresponding wind speed was 2. 84ms-1, using values from Appendix 1. In fact using the datum I recorded a wind speed of 8. 20ms-1. The graph shows that the expected values for wind speed, produced from the calibration are all inaccurate. This obviously relies upon the assumption that the datum is accurate, which I can do. The results show that as the potential difference created by my anemometer increases, the inaccuracy increases. Both sets of results are linear showing that the calibration was successful to a certain degree, but now using this data I can analyse and explain why the results I achieved were inaccurate. Although they are inaccurate, they are not anomalous as they follow the predicted pattern. Analysis There were several factors during the calibration that could have led to these inaccurate results. Firstly, when the anemometer was placed in a very narrow wind stream, the returning cups did not have to pass through the same wind which was turning the cups. This means there would have been less air resistance during the calibration than when recording results. Contextually, this means that a potential difference of 50 mV created during the taking of results may correspond to a potential difference of 60 or 70 mV created during the calibration. This agrees with the results recorded, although the degree of inaccuracy is greater than this suggested difference. In actual fact using values from Appendix 1, the potential difference required to produce a wind speed equivalent to that recorded for 50 mV using the datum (4. 72 ms-1) is between 140 and 150mV. Another factor to suggest that the absence of air resistance during the calibration had an effect can also be seen on the graph. The inaccuracy of the results increases as the potential difference increases. This can also be explained using the same idea. During the calibration, a potential difference of 50 mV was calculated to correspond to a wind speed of 1. 51 ms-1; this means the returning cups were not encountering the resistance created by this corresponding wind speed. This can be compared to a potential difference of 80 mV where a corresponding value of 2. 51 ms-1 was calculated. The returning cups would therefore not be encountering a greater air resistance (because of the faster wind speed), increasing the inaccuracy of the results. The main factor that contributed towards the inaccuracy of the results, which encompasses the previous explanation is the inefficiency of the anemometer. As the winds energy was transferred from linear kinetic energy, to rotary kinetic energy (through the centre axle) into electrical energy (through the motor utilising the generator effect). At each stage energy will be lost, therefore making the values obtained for each rpm inaccurate. The inefficient transfer of energy was caused by several factors; these were friction in the motor, sound created by the turning of the cups, and mainly air resistance. The error seen in the results is a systematic error as all the results were similarly inaccurate; the speed of the cups that was calculated during calibration was slower than the actual wind speed. Obviously the size of error is greater than desirable when making a sensor, but now with this knowledge the results from the calibration could be altered to encompass this systematic error. Another factor that affected the accuracy of the results from the calibration was the inclusion of user error when measuring the time period for x number of flashes. For example, if I measured 40 flashes in 5. 50 seconds, but due to slow reactions or an error the time it took for 40 flashes to be produced was only 5. 30 seconds the difference in the calculated speeds of the cups would be 0. 11 ms-1. Although this is not a lot, it would still have been influential. The success of the anemometer can be measured by analysing its effectivness in meeting the qualities desirable for a good sensor. These include a good resolution, fast response time, low systematic drift or error, appropriate sensitivity and low random variation. The sensor had a relatively fast response time; the potential difference displayed on the multimeter was updated very quickly when a change of wind speed occurred. This made the data collection very different as the value kept fluctuating, although it showed a fast response time in respect of changing wind speed. I was able to reduce the effect that unsystematic random error had upon the results from the calibration by taking the average of the five sets of results. Small unsystematic variations were present in all the readings that I took, but as what I was measuring (thousands of a volt) is a small quantity these small variations had a relatively large affect (this being the sensors sensitivity). The sensitivity of a measuring system is the ratio of change of output to change of input; this is where the sensor became inaccurate as the multimeter did not have a sufficient resolution to create a sensitive enough sensor. The sensitivity was limited, as a very small input was inaccurately converted into a large output. This is why the results were so inaccurate, as the calculations converted very small differences of potential difference containing error (systematic and random) into relatively large values for wind speed therefore amplifying any error that was present in the results. For this same reason, the sensors resolution was limited. In conjunction with a high level of random variation caused by the multimeters insensitivity in measuring such a small amount of potential difference, the smallest degree of potential difference that I could accurately measure was 10 mV; this is ten, one thousandths of one volt. Therefore the resolution of the sensor is around 0. 15 ms-1; this is roughly the wind speed calculated from the calibration results for 10mV. This is irrelevant because of the fact that results can be calculated to 2 decimal places, as I can only be sure of results to the nearest 0. 15 ms-1 due to the sensors relatively large resolution. In comparison, the datum can accurately measure to 2 decimal places, e. g. 2. 42 ms-1. I was able to detect and explain the systematic error due to the fact that my sensor was relatively inaccurate and I had access to a much more accurate sensor designed to measure the same thing. The use of a datum enabled me to effectively analyse my results. Overall to create a more successful sensor, I would need to review the complexity of this sensor and devise a method that reduces the margin for error as the current design encompasses too many opportunities for the results to be affected. Bibliography www. uq. edu. au Picture of Reed switch Advancing Physics AS Institute of Physics Lonsdale Science Revision guide The essentials of OCR science double award. Instrumentation coursework. doc Toby Parnell.
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