Saturday, October 5, 2019

Letter of Interest Assignment Example | Topics and Well Written Essays - 250 words

Letter of Interest - Assignment Example the future and I made sure to continue my training in that field by completing short term computer studies in Website Design and training in the use of DHTML. I also possess Certificates of Completion in C+, Visual Basic, and Perl Software, computer languages which are the basis of all the current modern day computer software. I was blessed to have grown up in an era when the game consoles were but a developing segment of entertainment. It is my opinion that only someone like me, who has been using the previous incarnations of the game consoles, who can best understand the problems of the clients and help them solve it without getting too technical with them. The re-training that will come with this possible promotion and transfer is something that I am willing to undergo in the name of career development. I am not afraid of this challenge and I am looking forward to eventually completing the training program and being able to help our clients in what will be a new line of work and field of career development for me. I have attached the documents that I feel are pertinent to my application for your consideration. As you can see, my interest in the position is more than just a passing fancy. That is why I have made myself available to further discuss my application at your convenience. Thank

Friday, October 4, 2019

Iraq War Essay Example | Topics and Well Written Essays - 1250 words

Iraq War - Essay Example charter. As U.S.A and its coalition governments are signatory's to the UN Charter, this move led to the 'Prohibition of Aggression' and hence is considered illegal. By performing such action, the U.S.A totally stained the credibility of the U.N. by diverting from its resolutions. One major concern of the U.S.A and its allies was that Iraq possessed 'weapons of mass destruction' (WMD). This worry was due to Iraq's refusal to allow a UN inspection on its WMD facilities in 1998, in spite of the fact that this was an obligation under the 1991 armistice. This was proved to be wrong much later when enough damage was done. According to a report carried out by the International Atomic Energy Agency (IAEA), it was categorically stated that Iraq did not possess any nuclear weapons. However, just the fact that the U.S.A were wrong in believing that Iraq did indeed possess WMDs which could be a potential threat to them shows that why preventative wars are immoral. Another justification for invading Iraq was based on its alleged links with terrorism and Al-Qaeda. This too was an assumption not based on any solid evidence. According to a CIA report it was indicated that the Iraqis had been deliberately avoiding any actions against the U.S. Also, in spite of the then U.S. Defense Secretary, Donald Rumsfeld believed that Iraq was backing international terrorism, according to the State Department's annual study report, there were no serious threats of terrorism by the government of Iraq. If this was the real cause, then countries like Iran and Syria are suspected of doing the same, but they are not the objects of U.S.A.'s invasion threats. The question here is not whether Iraq is directly linked to terrorism or not, but to find out to what extent is it linked to terrorism if at all. The belief that Iraq posed a military threat to U.S had been proved wrong much long ago when it was reported that Iraq neither possessed the launchers for their missiles nor the engine to power them (UNSCOM, 1992). There was absolutely no evidence if Iraq possessed Scud missiles and launchers after the Gulf War. With its neighboring countries like Israel having a much sophisticated defense system in place, Iraq was in no way a military threat. It is also believed that the use of force must have high prospects of success. USA's motive to invade Iraq also aimed at establishing peace in the Middle East. Bush administration on April 9, 2003 stated that there were 30,000 Iraqi casualties, though according to a national survey by The Lancet, there are about 654,965 Iraqi deaths from March 2003 to July 2006. A storm was provoked by the shocking admittance by British Prime Minister Tony Blair that the Iraq war caused by U.S.A was a 'disaster'. Though he said that this disaster was not a cause of some accident in the planning, but due to existence of a deliberate strategy to create a situation in which the minority that supports war overpowers the majority that presses for peace. He went on to say that the violence in Iraq was continually on the rise and led to a disturbed Middle East. According to the former SAS officer Peter Tinley, who played an active role in the devising and execution of the Iraq war plan for Australia publicly stated that the 'nation's involvement had been a strategic and moral blunder.' He went on to say

Thursday, October 3, 2019

Real ‘Angle of Mercy’ During the Crimean War Essay Example for Free

Real ‘Angle of Mercy’ During the Crimean War Essay Do you agree with the view that Mary Seacole , and not Florence Nightingale , was the real ‘angle of mercy’ during the Crimean War? During the Crimean war, both Mary Seacole and Florence Nightingale showed aspects of being angels. The word ‘angel’ suggests a heavenly person who is attentive to the soldiers’ needs, and ‘mercy’ means showing kindness and forgiveness, and the ‘angel of mercy’ basically suggests a compassionated and kind-hearted person who empathizes and helps soldiers in need. Although Nightingale had showed the aspects of being an â€Å"angel of mercy†, the amount of work and commitment Seacole had put in outweighs Nightingale’s; therefore I believe Mary Seacole deserves the title of the real â€Å"angel of mercy†. Florence Nightingale actions mainly focused on the hygiene and cleanliness, and the organization of the hospital since the majority of the death was due to neglect of sanitation. Source U is a lithograph of one of the wards in the Barrack Hospital in Scutari, where Nightingale was in charge of. It showed the hospital was clearly clean and organized with windows opened, clean floor, wide space between organized beds, suggesting that the soldiers’ conditions were getting better. Nightingale was also very hardworking, because even at night she used to walk around the hospital carrying a lamp to check on the patients, hence she is also known as the â€Å"The Lady with the Lamp† throughout the history, which shows her commitment in her work as a nurse. She certainly had â€Å"formidable gifts of organization† as it says on source V, and her involvement in the war had also made a huge impact on the death rate, which reduced from 42 per 1000 to 2 per 1000 in June 1855. Despite the fall of the death, 5000 men died in her hospital due to poor hygiene in the winter of 1854-1855 before the sanitary commission arrived, yet she refused to acknowledged that it was from the lack of sanitation and said the men were â€Å"half dead† when they were brought in, because at that time she didn’t know that the hospital was built on top of a cesspool. On top of that, it was revealed in the letter written by Lord Palmerston to Lord Panmore that the sani tary arrangement was actually done by Dr. Sutherland and Dr. Grainger, and still Nightingale took all the credit. Even though, Nightingale has made positive impacts on the course of the war and paved a way for improving in the nursing field, her actions aren’t enough to fit the image of an â€Å"angel of mercy†, since she was a harsh, cold woman who criticized her own nurses and only checked the patients from a distance, completely neglecting the importance of consoling and communicating with the soldiers, as it is also shown on the source U – on the lithograph Nightingale is seen leading the wounded; however, she keeps a distance inbetween. This shows that Nightingale is recognized through the image of the clean organized ward, rather than a kind-hearted and compassionated nurse treating the patients, and the ‘angel of mercy’ ought to provide both physical and mental needs to the soldier as the title says, since they will not only suffer physical attacks but will also be mentally affected by the war, and Nightingale failed to provide mental treatment. On the other hand, Mary Seacole’s engagements fit the image of the â€Å"angel of mercy† and source V praises Seacole and her involvement during the war, despite being rejected by the British authorities due to her race and background. She went to Crimea by herself to help the wounded, whereas Nightingale who went there in request of the Minister of War, Sidney Herbert, to go to help in the war. Seacole had no hospital to take care of the wounded, but she built her own â€Å"British Hotel† in Balacava by her money, unlike the government funded â€Å"admirable hospital† in Scutari, which took days of boat trip from the battlefield. In source v, it also tells how Seacole was â€Å"in the very front line† treating the wounded, which was truly a heroic act because during that time females were seen weak and delicate, let alone belong on the battlefield, but â€Å"she showed courage under fire†, â€Å"unlike some officers† and risked her ow n life to save others. This also links to the idea of ‘angel’ because like a guardian angel she was protecting them, and she may also have appeared physically like an angel to some of the soldiers as she drifted through the battlefields healing people. This shows the bravery and effort of Seacole puts in helping the soldiers, and the fact that she treated the wounded at the scene might have contributed with the drop of death-rate. Her â€Å"British Hotel† was also an important refuge to the soldiers, which again comes to the idea ‘mercy’, as it says in source V that the soldiers felt more at ease with â€Å"Mother Seacole† than in the hospital, because the hotel was more homelike. Unlike Nightingale, briefly checking the patient and ordering the nurses, Seacole was more socializing and hands on approach to the individuals, therefore she was closer with the soldiers since she ran the hotel by herself and did everything by herself, on the other hand Nightingale did ver y little nursing and more works on the running and organizing of the hospital, which shows that she was more of an administrator than a nurse. Seacole approach of treating wounded and â€Å"patients suffering from cholera and dysentery† was more effective than Nightingale’s method, showing that Seacole was more skilled and had more knowledge on medicine. Source V points out that, Seacole was certainly kind, caring, empathizing like an ‘angel of mercy’, because she was the figure of a ‘mother’ to the soldiers and â€Å"attentive to their practical needs†. She nurtured them, like a mother would for their children, providing physical and mental when they are away from home and family, and also providing them with pocket handkerchief for the winter. She was admired and loved by the soldiers and that is how she received the name â€Å"Mother Seacole†, and the soldiers also arranged an event after the war to thank her. However, media neglected Seacole’s achievement because of her race and attributed the title of â€Å"angel of mercy† to Nightingale. But there are evidences which prove that the hospitality that Seacole provided was better and more effective than Nightingale’s. Seacole not only treated the wounded because she was a nurse, but that helping soldiers was her passion; the strong, brave, determine, motherly characteristic of Seacole allowed her to provide the best for the soldiers during the war. She did everything from scratch on her own, whilst Nightingale was just appointed to run the hospital; on top of that Seacole put in more effort in taking care of the soldiers and was more compassionated than Nightingale. â€Å"Mary Seacole was on hand for the troops in the long months when nothing much appeared to be happening† just like a ‘mother’, which is figuratively close to an ‘angel’, showing that she was indeed the real â€Å"angel o f mercy†.

Discharge of Water through a Spherical Orifice

Discharge of Water through a Spherical Orifice There are multiple factors that affect the discharge of water through a spherical orifice. These can include the height of water above the incision, the cross sectional area of the hole and the shape of the hole that the fluid is flowing through [New Century Senior Physics 2004]. But first of all, what is fluid?       Fluids are defined as any substance that cannot sustain any tangential or shearing force while maintaining its form at rest, basically any substance in the form of a gas or liquid [Britannica 2017]. They generally have no fixed shape and when exposed to stress, the fluid will experience a continuous change [Britannica 2017]. Flow is a universal property for all fluids [Britannica 2017]. For liquids in particular, the flow is influenced by the acceleration due to gravity. If the fluid is non-viscous and incompressible, while the flow of the fluid is steady, then this flow can be seen from an energy perspective [Fluid Mechanics and Bernoullis Principle 1999]. In pipes, there are two factors to allow a fluid to flow, the first method is to tilt the pipe so the fluid gains Gravitational Potential Energy [Fluid Mechanics and Bernoullis equation 1999]. This is defined as the stored energy that liquids or solids with mass possess that is dependent on the acceleration due to gravity and the respective height the object or substance above the ground [Hyperphysics 2017]. When the pipe has been tilted enough, the flow will be downhill, this moment is where the accumulated gravitational potential energy is transferred to kinetic energy, the energy of motion, hence creating the flow of a fluid [Fluid Mechanics and Be rnoullis Principle 1999]. The law of conservation of energy states that for any physical or chemical change, energy cannot be created nor destroyed, this describes this procedure of the energy transfer previously mentioned [Madden et al. 2004]. {FLOW} The second method to make a fluid flow is to increase the pressure at one end of the pipe so it is larger than the pressure accumulated on the other end. This in turn creates a pressure difference which acts as a net force, accelerating the fluid through the pipe which is known as flow [Fluid Dynamics and Bernoullis Principle 1999]. Jets are a common form of fluid flow. They are defined as a fluid discharged forcefully through a narrow opening or orifice, resulting in a stream like motion [Meriam Webster 2017]. One of the main components of the jet is its velocity, this is affected by multiple factors including the holes size and shape, the fluids pressure and viscosity, even the medium which it passes through can, inhibit the jets potential velocity. If the composition of the jets fluid is somewhat identical with a stationary medium surrounding the flow, the jet can be classed a submerged jet [Farlex Inc 2017]. Examples of this flow are the air currents through a still atmosphere, this is because the fluid is air and the surrounding media is also air [Farlex Inc 2017]. There are many other forms of jets including free jets which are the opposite from submerged, they are where the jet passes through unbounded mediums. Semi-contained jets occur when the jet passes along a flat surface while confined jets exist in mediums bounded by solid surfaces, for example a pipe with a diameter larger than that of the inlet [Farlex Inc. 2017]. {Jets, discharge, vena contracta?} When fluid jets are in motion, their cross sectional area is quite often subject to contracting. The site of this contraction is known as the natural phenomenon of vena contracta, which can be defined as any of the locations in a jet of fluid emerging from and orifice where the flows cross sectional area is at its minimum [Dicionary.com, LLC 2016]. Vena contracta usually occurs as a result of the fluids streamlines converging as they approach an orifice [Calvert J.B. 2003]. Generally, this leads to the cross sectional area of the jet decreasing slightly until the pressure in the cross-section has been equalized, it is also at this point where the jet experiences its maximum velocity in its flow [Calvert J.B. 2003]. Beyond the site of vena contracta, the jets streams start to diverge as a result of friction and drag caused by the jet flowing through another fluid, in this case, the air surrounding the flow [Calvert J.B. 2003]. The cross-sectional area will increase while the jet decel erates from the surrounding fluid as a result which is why the jet can be seen transforming from a constant flow to small droplets. Jets are held together by surface tension which is why they generally do not continue to be a perfect flow, this tension has a stronger effect the smaller the diameter of the jet [J.B. Calvert 2003]. This is why decreasing the size of the orifice will lead to an increase in the displacement of the jet from the container because by decreasing the cross section, the jet will accumulate more velocity at vena contracta. Pressure is another factor that affects the displacement of the jet from the orifice. If the pressure accumulated inside the container is substantially high, the fluid tends to compress in a closed container [Spence Regan 2007]. However, if the fluid is incompressible like water, an increase in pressure will generally lead the fluid molecules to basically push up against the walls of the container as it attempts to decompress back to the normal atmospheric pressure surrounding the container [Spence Regan 2007]. Because of this, when a leak has been sprung in a container consisting of a pressurized fluid, the fluid will be inclined to escape, and with more pressure, the faster the fluids discharging velocity will be [Khan Academy 2017]. Naturally, especially when dealing with water as a fluid, pressure is most commonly affected by and directly proportional to the height of the waters (fluids) surface above the specific measured location, or the depth of the location from that surface [Madden et al. 2004]. The reason for this is because the height of the fluid administers a mass over that specific location, which then, assuming that the fluid analysed is influenced by the acceleration due to gravity, a force will be produced as stated in the equation below [Madden et al. 2004]. or [Madden et al. 2004] This accumulated force will result in Pressure through the equation Where: P= Pressure (Pa) f=force (N) A=Area (m2) [Madden et al. 2004] However in fluid mechanics, another more accurate equation is required, this is known as Bernoullis equation which relates to Bernoullis Principle. This principle is based on the law of conservation of energy and states that a fluids pressure decreases when it is subjected to increased velocities, vice versa [Madden et al. 2004]. The pressure, velocity or heights of surfaces above the hole in most fluids are related to the same parameters at a second point through Bernoullis equation as stated below [Fluid Dynamics and Bernoullis equation 1999]. Where: P=Pressure (Pa) à Ã‚ =Density (kgm-3) v=Velocity of Fluid (ms-1) g=Acceleration due to gravity (ms-2) h=Height (m) [Madden et al. 2004] The pressure of a fluid at depth can be given through a derivative of Bernoullis equation. Where: Ph=the pressure at depth (Pa) à Ã‚ =density of fluid (kgm-3) g=acceleration due to gravity (9.81ms-2) h=the height of the fluids surface, in this case the water, above the specific location where Pressure at depth is measured. Ptop = the pressure at the fluids surface (Pa) [Madden et al. 2004]. This equation can be used to find the pressure at certain points like at the same level as the orifice inside the bottle [Madden et al. 2004]. For this experiment however, the pressure will be measured and calculated at the same level as the orifice and since the pressure at the fluids surface can also be considered as the air temperature inside the room this will also be used in the equation. For eg, If the waters density, the acceleration due to gravity and the air pressure were kept at constant while the height of the surface above a certain location was increased, then the Pressure at that location should also increase like so [Madden et al. 2004]. If à Ã‚ =1000kgm-3, Ptop=94500Pa and g=9.81ms-2 When h= 10m [Madden et al. 2004] This is important in many applications like dams, towns and especially high rise buildings. Water will need to be mechanically pushed up to the top of a building so people at the top floors can have sufficient water to have a shower [Madden et al. 2004]. It is also because of this understanding of fluid mechanics that hilly cities often build water towers or reservoirs at the top of hills or mountains to help accumulate this needed pressure to effectively distribute water to the population [Madden et al. 2004]. Pressure can directly affect the exit velocity of the fluid being discharged as it flows out through an opening in any form of container or reservoir. This is known as the velocity of efflux and is determined through many similar formulae. The most common is derived from Torricellis theorem which is about the relationship between the height of the fluid above the orifice, and the exit velocity of the fluid projected from a sharp edged orifice [Boundless 2016]. The law also states that the speed (velocity) of a liquid flowing under the influence of gravity out of an orifice in a reservoir is directly proportional to the square root of the vertical distance between the surface of the liquid and orifice and the square root twice the acceleration due to gravity [Britannica 2017]. The equation that relates to this theorem is stated below. Where: Vi= Velocity of Efflux (ms-1) g= Acceleration due to gravity h= Height of the fluids surface above the orifice This velocity is a result from a transfer of potential energy to kinetic energy [Boundless 2016]{Torricellis Law and height/Displacement} Other deviations of this equation can be used to factor in for orifice and container sizes like displayed below. Where: A= Area of Container (m2) a= Area of Orifice (m2) [CalcTown 2017] In this case the areas can be calculated using the standard area formula for a circle. According to calculations using this formula however, velocities are not effected significantly from changing the containers area or even the orifices area. But the area of the orifice seems to affect this velocity more adversely than the area of the bottle which is why changing the area of the bottle will not be tested in the experiment [CalcTown 2017]. Orifices also come in many different shapes or categories. The most common of these is the sharp edged orifice which is a simple hole [lmnoeng 2016]. Other common orifices include smooth edged, short tube and borda which appears to be a short tube on the interior of the container. Each different hole affects the velocities and displacements of the jet as the jet is subjected to either more or less friction and drag through each different hole type [lmnoeng 2016]. This results in many different coefficients of discharge and velocity which can then be inserted into equations. The orifice types are displayed below. According to multiple experiments the average coefficients of velocity for each orifice have been determined. The orifices that will be used for this experiment are the Sharp edged, Short tube and Borda because the Rounded orifice is too hard to replicate using the resrouces on hand. The sharp edged orifice has an average velocity coefficient of 0.98 as well as the borda hole. The short tube has a velocity coefficient of 0.8 [LMNOeng 2016]. The equation that can implement this coefficient is a derivative of Toricellis The viscosity of the fluid can also affect a fluids flow displacement out of an orifice. Viscosity is defined as the resistance of flow and is the result of the interaction and friction between different molecules in a fluid, at a molecular level [rheosense 2017]. A substance that has high viscosity has high friction and flows through an orifice slowly, this in turn means that it would not be displaced very far from the hole, an example of this is honey [rheosense 2017]. Viscosity can be decreased with an increase in temperature [Viscopedia 2017]. Water however is said to have a low viscosity, so this temperature change theoretically should not affect its discharge to much which is why temperature will not be a variable that will be tested [Viscopedia 2017]. To determine each of the horizontal displacements that the jet will theoretically travel, the cross sectional area of the 1.25L soft drink bottle (A) needs to be calculated first through the simple area equation for a circle. This will be used universally to calculate the Velocity of Efflux. [Simson Rowland 2010] Since this first experiment is testing the displacement of water through a diameter change, the cross sectional area of the orifice (a) needs to be calculated next. The height of the surface as a variable is kept at a constant 0.012m, while for this example, the diameter of the orifice is 3.18mm. [Simpson Rowland 2010] Then the pressure at depth can also be calculated next from Bernoullis standard fluid equation and for this first experiment, the pressure determined will be the same for each hole size being tested. Assuming that the pressure at the surface of the fluid is 94500Pa, the density of water is 1000kgm-3 and the height of the surface above the orifice is 0.12m, the pressure of the fluid at the same level as the orifice should be given below. [Madden et al. 2004] A deviation of Toricellis equation can then be used to determine the velocity of efflux with in the jet. The value calculated can be used to determine the theoretical displacement of the jet. [CalcTown 2015] And now the maximum displacement the water is expected to discharge can be found using another deviation of Torricellis equation that has been rearranged slightly to fit requirements. Assume that the orifice height from the bottle is 0.19m above the location where horizontal displacement is measured (ruler). m [Calvert, J.B. 2003] Therefore based off theses assumptions and calculations, theoretically, when the jet starts flowing from a surface height of 0.12m and an orifice diameter of 3.18mm, the fluid should be displaced about 0.302m from the orifice. The theoretical displacements of the water are displayed in the table and graph below. Theoretical Displacement from Diameter Change (test 1) Diameter (mm) Velocity of efflux (ms-1) Displacement (m) 0.00 0.00 0.00 3.18 1.53 0.30 4.76 1.53 0.30 6.35 1.53 0.30 These displacements are the same, however by increasing the hole size, the displacement does increase however by not a large amount as displayed in the graph below. Due to background research above, the theoretical displacements of the water in experiment 2 can be determined from each of the heights that will be used. Beginning at the surface height of 0.04m, theoretical displacements can be determined from the following calculations assuming that the jet is not affected by air resistance and the pressure at the surface of the fluid is 94500Pa. [Madden et al. 2004] So the pressure at the hole should be 94892.4Pa. The velocity of the jet can then be calculated using the areas calculated before and the same deviation of Torricellis law. [CalcTown 2015] Using this value calculated, the horizontal displacement can be determined using the equation from experiment 1, still assuming that the height of the orifice above the location of measuring is 0.19m. [Calvert, J.B 2003] Therefore the expected horizontal displacement when the height of the surface is 0.04m is 0.174m. The other results calculated using these formulae are displayed in the table and graph below. Theoretical Displacement from Height Change (Test 2) Height (m) Velocity of efflux (ms-1) Displacement (m) 0.00 0.00 0.00 0.04 0.89 0.17 0.12 1.53 0.30 0.20 1.98 0.40 A new set of equations will need to be used to determine the velocity of efflux, seeing as the formulae previously used only factors in surface heights, orifice and bottle sizes. This formula will need to utilize the coefficient of velocity for each hole shape as this coefficient supposedly changes with a change in hole type. Beginning with the first hole, borda (interior tube), we will assume that the height will be 0.12m, air resistance does not affect discharge and the coefficient of velocity will be the same as the average researched for this hole, 0.98. A deviation of Torricellis equation will be used to incorporate this coefficient into calculating the velocity of efflux but first the pressure inside the bottle will need to be calculated. [Madden et al. 2004] Now the Velocity of efflux will be calculated as previously mentioned, also assuming the same factors previously mentioned. [LMNO Engineering, Research, and Software, Ltd 2015] Using this velocity, the expected horizontal displacement of the jet can then be calculated using the same equation and method used in previous tests. [Calvert J.B. 2003] Therefore the expected displacement the jet should be displaced using a Borda orifice is 0.296m, that is if all assumptions made come into effect in the experiment. All results calculated using this same format and assumptions are displayed in the table and graph below. The other orifice use different coefficients to be calculated, it is assumed that for the Sharp edged orifice, the velocity coefficient will be 0.98 like Borda, and for the short tube, the coefficient is 0.80.

Wednesday, October 2, 2019

Got Milk? Advertisement Analysis Essay -- Advertisements Commercials M

â€Å" This advertisement was found in the October issue of Cosmopolitan. â€Å"Got Milk† advertisements are seen in all types of magazines from sports to beauty, featuring many different kinds of celebrities selling their product. The product being sold in â€Å"Got Milk† advertisements is, of course, milk. They are trying to reinforce that the calcium in milk keeps bones strong and helps prevent osteoporosis. In this advertisement for milk irony is it’s secret weapon to get the point across. There is a green eyed blonde with a low cut â€Å"little black dress† caressing her flawless body with her arm around a martini glass filled with milk. She is seductively leaning against a glass covered wooden bar with a luring gleam in her eyes. Her and the milk are the main focus of this advertisement. In the background is faded liquor and wine bottles. While looking at her you cannot take your eyes off of her milk mustache and the milk martini glass that got to touch her full pink lips. The irony of this advertisement is that out of all the handsome tall liquor bottles, she chose the thin lean martini with milk in it. The difference between her night black dress and the pure white milk contrasts like night and day. Good and bad shows their faces at the bar. The sex appeal of this woman in a bar full of alcohol drinking milk makes you question what the purpose of this add is. The positioning, proportions, and color in this ad portray the use of the goodness/purity of white milk positioned directly by the dark seductive woman and liquor bottles, which make you question what is good and bad for yourself. The proportions of the liquor bottles and the martini milk glass in this advertisement show the sizes, or importance of these objects. The liquor bottles, being small and in the back of the advertisement show that they are not as important to the viewer as the milk, which is larger and in the front. Of course it would be this way because the whole point of the advertisement is selling the product, milk. The liquor bottles are, therefore, in the back of the advertisement to cause your eye to wander to notice them and to intrigue your conscience. The martini glass is tall and slender just like the woman that stands beside it. The figure of the martini glass stands out to the viewer and makes him or her think about what is right for their body. The martini glass is a positive aspect of ... ...s for yourself. With the dark, liquor bottles in the background it suggests to the viewer that they should accept the temptation and not choose the milk. The milk, being the only white object in the advertisement is chosen by the woman and will influence the viewers by the vibrant white color of the milk. The colors used in this advertisement try to influence and tempt the viewer into picking what is bad for them, but because of the bold, white color of the milk viewers are not mistaken. The use of the goodness/purity of white milk positioned directly by the dark seductive woman and liquor bottles, that make you question what is good and bad for you is portrayed by the proportions, positioning, and color in the advertisement. The proportions show the sizes and importance of the objects in this advertisement by deceiving the eyes of the viewer. The martini milk glass and the liquor bottles in this advertisement lead one to think about the good and bad choices they make for themselves everyday by the positioning of the objects. The enforcement of the idea, black and white, or good and bad, is described through the colors of the liquor bottles and the martini milk glass.   Ã‚  Ã‚  Ã‚  Ã‚  

Tuesday, October 1, 2019

Success Essay -- essays research papers

~~†If one advances confidently in the direction of their dreams, and endeavors to lead a life which they have imagined, they will meet with a success unexpected in common hours.† – Henry David Thoreau What is success?   Ã‚  Ã‚  Ã‚  Ã‚     Ã‚  Ã‚  Ã‚  Ã‚   Is it the process of doing a task and receiving a positive result, or is it simply achieving ones own personal goals? One’s ability to succeed in life is almost directly related to an image of the perception of what success is. Many of America's most successful businessmen, such as J.P. Morgan and Andrew Carnegie, understood what it took to survive in the rapidly evolving business world. Their belief was that success is tangible only through smart business interactions and good money management, personality and good looks only serve as a bonus. Rene Gallimard in Madame Butterfly and Willy Loman in Death of a Salesman evidently did not grasp these experts' concept of success. Both Willy Loman and Rene Gallimard define success as their antithesis, and measure their level of accomplishment against their individual barometers for success. Willy Loman preaches that success comes hand in hand with a great smile and a jovial personality but he believes that success is hidden in far off opportunities. Rene Gallimard defines a successful person as one who has the ability to control and maintain power over another. Both of these images are tainted because they are simply representations of their maligned, s...

Reading as a Psycho-Social Process.

Reading as a Psycho-social process. Every second of the day, people read messages from official communication, mass media and the Internet. Through the internet alone which is today’s most popular form of communication, people can read and interact immediately to e-mails, news and information web-sites, other forms of informational, commercial, political, development websites, as well as blog-sites which are interactive journals on all facets of modern living. Needless say, reading is a social activity that engages humans in the world.It is also purposeful social communication, as it involves all facets of life from what is private to what is official, from what is personal to once that is public. The workings of businesses, industries, schools, governments, foundations and international agencies like the United nations would be stalled without reading as a human activity. Imagine the load of messages that we would miss without reading personal e-mails and letters, newspaper n ews and commentaries, government documents, agency plans, international agency policies, etc.Reading is also professioncal as it is a form of communication done in all the professions and human pursuits including scientific and technological research and studies. A you graduate, you would want your prospective employers to read your job application paper, resume and samples of your written work. Read more in Education  « All About Glee 6th Grade Parenting Guide  » Also, reading is a unique activity which you can adopt every day.Speaking of reading as a skill like other skills such as dancing, writing, acting, sports is something you can continually improve upon. Countless hours have been spent in these other skills and so we should not be reluctant to accept the suggestion that our reading ability,too, needs constructive development. In sum, reading can mean the difference between the amateur and professional, as well as successful career person you wish to become.