Sunday, September 1, 2019
The Presidio San Elizario
The Presidio of San Elizario In 1598, the Spanish nobleman, Don Juan De Onate from Zacatecas, Mexico was leading a group of Spanish colonists from Mexico to settle the newly discovered province of New Mexico. The group traveled for weeks across the desert until it reached the banks of the Rio Grande River near the San Elizario area. Soon afterward, Onate proclaimed possession of this area in the name of his King, Phillip II. The small town of San Elizario is named after the French Saint Elcear, the French patron saint of the military.It is one of the oldest communities in the El Paso Area. The community was established during the late 1700ââ¬â¢s. A presidio was built in the area in order to protect the Spanish settlers from the attacking Apache and Comanche Indian raiders. The exact date of when the presidio of San Elizario was first built remains a debate between many local historians. One well known area historian, Metz, writes, ââ¬Å"The original presidio was built around 1773 and that the original chapel was built of mostly adobe and some wood, and took approximately 40 years to construct. Most of the work was done by prisoners, some of them Indian, mostly Apache. (254). As noted by an online source, the presidio itself was surrounded by a double wall of adobe measuring 13 feet tall by seven feet wide. Inside were barracks for soldiers and special officer quarters. Also within the fort were family residences, corrals, store rooms, and a small chapel. This small chapel was built in a box pattern reflecting the early ââ¬Å"European colonialism. â⬠(San Elizario). The chapel has gone through major changes throughout its history, yet still remains close to its original location to this day.As historian John O. West notes, the San Elizario Presidio is often mistaken as a mission. However, the presidio of San Elizario was not created to convert the local natives to Christianity, but in fact was created as a fort or presidio to protect the Camino Real an d other area settlements from Apache and Comanche Indian raiders. (19). An online source also notes that the presidio was involved in numerous military engagements and natural disasters which forced its movement many times throughout itââ¬â¢s early history. (Reyes).According to another historian, Douglas Kent Hall, ââ¬Å"The presidio was moved 37 miles up the Rio Grande in 1780 to its current site. â⬠(131). According to another internet source, ââ¬Å"During the early 1830ââ¬â¢s the unpredictable Rio Grande River changed course, virtually isolating San Elizario and its surrounding communities as an island in the middle of the Rio Grande. â⬠(San Elizario). After the US-Mexico War of 1846-1848, the Treaty of Guadalupe Hidalgo was signed, establishing the Rio Grande River as the boundary between Texas and Mexico.This left San Elizario to become part of what is now the state of Texas. San Elizario is steeped in both Texas, and Hispanic history. Still remaining today, the San Elizario presidio and chapel has moved many times and gone through many changes since its original construction. One online source notes, in 1829, the Rio Grande flooded completely destroying the ââ¬Å"Chapel at San Elizario. â⬠(San Elizario). A different Website points out that the chapel that stands in the same location today was rebuilt in 1882. (Kohut). Another online source notes, the exterior has changed little from its original construction.The main difference was in the change of the front ââ¬Å"facade,â⬠as this added to the, ââ¬Å"early European colonial,â⬠influence on the contemporary construction of the time. A fire destroyed much of the interior of the chapel in 1935. The inside has undergone dramatic changes since then, again reflecting the influence of ââ¬Å"European architectural style. â⬠With ââ¬Å"pressed-tinâ⬠covering the original ceiling covers and beams. Several additions have also been made to the exterior of the chapel . For instance, an orchard has been added to the east side of the chapel and the surrounding plaza.More adobe structures have also been added to the surrounding area in order to add to the formality of the area. The formal rectangular patterned streets and building orientation ââ¬Å"reflects the elements of early Spanish colonialism. â⬠In 1944 the chapel was repainted in order to honor the local soldiers who fought overseas in World War II. (San Elizario). A local college student writes in the Borderlands Website that a ââ¬Å"major restoration of the chapelâ⬠began in 1993, however much work still needs to be done to the exterior walls of the structure.The Mission Trail Association, which was formed in 1986, has done much work to uphold the heritage of the chapel at San Elizario and other local Missions. Through their hard work, the Socorro and Ysleta missions, along with the San Elizario chapel have retained their beauty and strength through hundreds of years of faith and devotion. (Reyes). With the help of the Mission Trail Association and donations from tourists and local interest in its preservation, the San Elizario chapel can be a monument for many more generations to enjoy. Works Cited Hall, Douglas Kent.Frontier Spirit: Early Churches of the Southwest. New York: Abbeville Press, 1990. Print. Metz, Leon C. El Paso: Guided Through Time. El Paso, Texas: Mangan Books, 1999. Print. West, John O. ââ¬Å"Presidio Chapel San Elceario: San Elizario, Texas, USA. â⬠The Mission Trail: El Paso/Juarez. Ed. Laura Jusso. El Paso, Texas: Sundance Press, 1996. Print. Reyes, Blanca et al. ââ¬Å"Area Missions are Part of Living History. â⬠Borderlands. Web. 22 Jan 2009. ââ¬Å"San Elizario Walking Tour. â⬠El Paso County History. Web. 18 Dec 2009. Kohout, Martin D. ââ¬Å"San Elizario Presidio. â⬠Handbook of Texas Online. Web. 23 Apr 2009.
Saturday, August 31, 2019
Qualitative Analysis of Anions Essay
The objective of this experiment was to use qualitative analysis to determine the chemical characteristics of four known anions by systemic confirmatory testing. The chemical characteristics observed were to be used to identify an unknown sample. Sulphuric acid was to be added to a carbonate solution and an effervescent reaction would confirm the presence of carbonate anions. Another sample of carbonate solution was to be reacted with hydrochloric acid and the gaseous product was to be reacted with a suspended drop of barium carbonate. The presence of clouding in the droplet would also confirm the presence of carbonate anions. Silver nitrate was to be added to chloride solution and the formation of a white precipitate, silver chloride, would confirm the presence of chloride anions. Ammonium hydroxide would be added to dissolve part of the precipitate. The resultant supernatant solution was to be decanted and re-acidified with nitric acid to reform the precipitate and definitively confirm the presence of the chloride anion. Silver nitrate was to be added to iodide solution and the formation of a yellow precipitate, silver iodide, would confirm the presence of iodide anions. Another sample of iodide solution was to be reacted with drops of acetic acid until sufficiently acidic. Potassium nitrate was to be added to the solution causing a colour change. Methylene chloride was to be added to this sample and shaken to confirm the presence of iodide anions by forming two separate and differently coloured layers. A barium chloride-calcium chloride mixture was to be added to sulphate solution and heated to 90oC. The sample was to stand for a period of time to allow the formation of aà white precipitate, barium sulphate, confirming the presence of the sulphate anion. The addition of hydrochloric acid and subsequent heating were to have no effect on the presence, further confirming the presence of sulphate anions. MATERIALS AND METHODS EQUIPMENT CHEMICALS Test tubes Carbonate Solution, Test tube rack Concentrated Sulphuric acid, H2SO4 Eye dropper 6M Hydrochloric acid, HCL Graduated pipette Barium hydroxide solution Ba(OH)2 Pipette bulb Chloride solution, Cl- Pasteur pipette Iodide solution, I- Beaker 0.1M Silver nitrate, AgNO3 Thermometer Concentrated Ammonium hydroxide, NH4OH 6M Nitric acid, HNO3 6M Acetic acid. HC2H3Oà 2 Potassium nitrate, KNO2 Methylene chloride solution, CH2Cl2 Sulphate solution, Barium chloride-Calcium chloride mixture, BaCl2-CaCl2 Unknown Sample 7 SAFETY Carbonate solution is hazardous in case of skin contact (sensitizer, irritant), of eye contact (irritant), inhalation (lung irritant), and ingestion. It should be kept in a cool, well-ventilated area. In case of spill, use appropriate tools to put the spilled solid in a convenient waste disposal container and neutralize the residue with a dilute solution of acetic acid. Hydrochloric acid is very hazardous in case of skin contact (sensitizer, corrosive, irritant, permeator), eye contact (corrosive, irritant), of inhalation (lung sensitizer, respiratory tract irritant), and ingestion (toxic). It should be kept in a dry container, kept away from oxidizing agents, organic materials, metals, alkalis, and moisture. In case of spill, dilute with water and mop with an inert dry material. Residue should be neutralized with dilute sodium carbonate. Chloride solution is hazardous in case of skin contact (irritant, permeator), of eye contact (irritant), ingestion, and inhalation (irritant). In case of spill, dilute with water and mop with an inert dry material and spread water on the contaminated surface. Iodide solution is lightly hazardous in case of skin contact (irritant), of eye contact (irritant), of ingestion, and inhalation. In case of spill, use appropriate tools to put the spilled solid in a convenient waste disposal container. And spread water on the contaminated surface. Silver nitrate is very hazardous in case of skin contact (corrosive, permeator), of eye contact (irritant), of inhalation, and ingestion.. Silver nitrate kept away from heat, sources of ignition, and combustible material. In case of spill, use appropriate tools to put the spilled solid in a convenient waste disposal container. Ammonium hydroxide is very hazardous in case of skin contact (toxic, corrosive, irritant, permeator), eye contact (irritant), inhalation (toxic to upper respiratory tract), and ingestion (toxic). Water should never be added to ammonium hydroxide and it should be kept a way from incompatibles such as metals, acids. In case of spill, dilute with water and mop with inert dry material. Neutralize residue with dilute acetic acid. Nitric acid is very hazardous inà case of skin contact (corrosive, irritant, permeator), of eye contact (irritant, corrosive), and ingestion. It is slightly hazardous in case of inhalation (lung sensitizer, respiratory tract and mucus membrane irritant). Nitric acid is explosive in the presence of reducing materials, of organic materials, of metals, of alkalis. In case of spill, dilute with water, mop with an inert dry, and neutralize the residue with a dilute solution of sodium carbonate. Acetic acid is very hazardous in case of skin contact (irritant), of eye contact (irritant), of ingestion, of inhalation. It is hazardous in case of skin contact (corrosive, permeator), of eye contact (corrosive). It should be kept away from sources of heat, ignition, and oxidizing material. In case of spill, Dilute with water, mop with an inert dry, and neutralize the residue with a dilute solution of sodium carbonate. Potassium nitrite is extremely hazardous in case of skin contact (corrosive, irritant), of eye contact (irritant), of ingestion, and inhalation. In case of spill, use appropriate tools to put the spilled solid in a convenient waste disposal container. Potassium nitrite should be kept dry, away from sources of ignition, heat, and combustible materials. Methylene chloride is very hazardous in case of eye contact (irritant), of ingestion, of inhalation, and skin contact (irritant, permeator). In case of spill dilute with water and mop with an inert dry material. Sulphate solution is hazardous in case of eye contact (irritant), skin contact (irritant), and ingestion. In case of skin contact, wash with soap and water, and cover area with an emollient. In case of spill, Dilute with water, mop with an inert dry material spread water on the contaminated surface. (ScienceLab, 2005) PROCEDURE Please refer to Lab 3: Qualitative Analysis Part 2- Anions chemistry Laboratory Manual 2013-2014, Durham College, pages 11-12 for full list of Materials and Methods. OBSERVATIONS Table 1a: Testing for the presence of Carbonate, CO32- anions 2 drops concentrated H2SO4 added, Test tube shaken Additional Observations Carbonate Solution, 3mL effervescence seen as colourless gas rises from bottom of test tube test tube feels much warmer, upon wafting the gas has a mildly unpleasant, acrid smell The presence of an effervescent reaction indicated that the sample had carbonate anions present. Table 1b: Testing for presence of Carbon Dioxide, CO2à to confirm the presence of CO32- anions 2 drops 6M HCl 1 drop BaOH suspended over test tube Carbonate Solution, 3mL small amount of effervescence noted about 5 seconds after being suspended over test tube, the base of the droplet clouded with white precipitate The addition of HCl to the sample resulted in some rising gas bubbles, indicated that a gas was being formed. The clouding of the barium hydroxide droplet indicated it was reacting with carbon dioxide escaping the tube and thus confirmed the presence of carbonate anions in the sample. Table 2: Testing and confirming for the presence of Chloride, Cl- anions 5 drops 0.1M AgNO3 added NH4OH is added drop-wise Supernatant solution is decanted, 6M HNO3 is added Chloride Solution, 5mL cloudy white precipitate formed precipitate partially dissolved upon addition, distinct clear supernatant formed above remaining precipitate cloudy white precipitate reformed, small white granulations settled at bottom of test tube 6 drops of ammonium hydroxide, NHà 4OH, were added to the sample 6 drops of the nitric, HNO3, were added to acidify the sample The formation of a cloudy white precipitate in the presence of silver nitrate indicated that the sample had chloride anions present. The subsequent addition of ammonium and re-acidification of the sample resulted in the reformation of a cloudy whit precipitate, thus confirming the presence of chloride anions. Table 3a: Testing for the presence of Iodide, I- anions 5 drops 0.1M AgNo3 added Iodide Solution, 5mL cloudy pale yellow precipitate formed The presence of a cloudy yellow precipitate with silver nitrate indicates presence of iodide anion. Table 3b: Testing and confirming the presence of Iodide, Ià - anions Acetic acid is added drop-wise 2 drops KNO2 added 15 drops Methylene chloride added, test tube shaken Iodide Solution, 5mL Blue Litmus Paper confirmed the solution was acidic by turning red solution turned a mustard-brown colour 2 distinct layers formed in the test tube. The bottom layer was reddish magenta, and the top layer was a burnt-orange colour 2 drops of acetic acid, HC2H3O2, were added to acidify sample Upon confirming the sample was indeed acidic, it reacted with the potassium nitrate to change to a mustard-brown colour. The addition of the methylene chloride formed 2 distinctly coloured layers, thus confirming that the solution had iodide anions present. Table 4: Testing and confirming the presence of Sulphate SO42- anions 0.5mL of BaCl2-CaCl2 mixture added Test tube heated, stood for 10 minutes 5 drops 6M HCl, test tube heated Sulphate Solution, 3mL very faint wisps of cloudy white precipitate appeared noticeable cloudy white precipitate distributed throughout solution addition of HCl made test tube feel warm after heating test tube precipitate remained dispersed in solution In each instance of heating, the test tube was placed in a boiling water bath at 90oC The final heating of the test tube was for approximately 5minutes at 90oC The reaction of the sulphate solution with the barium chloride-calciumà chloride solution, when heated, resulted in the appearance of a fine white precipitate, indicating the sample had sulphate anions present. The subsequent addition of HCl and reheating resulting in the solution remaining relatively the same further confirmed that sulphate anions were present. Table 5a: Testing for Unknown Sample 7 for the presence of Carbonate, CO32- anions 2 drops concentrated H2SO4 added, Test tube shaken Additional Observations Unknown Sample 7, 3mL no visible effervescence no noticeable change to test tubeââ¬â¢s temperature The lack of effervescence and heat produced by the sample indicated the absence of carbonate anions in the sample. Table 5b: Testing Unknown Sample for presence of Carbon Dioxide, CO2à to confirm the presence of CO32- anions 2 drops 6M HCl 1 drop BaOH suspended over test tube Unknown Sample 7, 3mL no noticeable effervescence suspended droplet remained clear, despite being held over test tube for 15 seconds The sample did not react with the hydrochloric acid to produce a gas that reacted with the barium hydroxide, thus the suspended droplet remained clear. The results further confirmed the absence of carbonate anions. Table 6: Testing and confirming Unknown Sample for the presence of Chloride, Cl- anions 5 drops 0.1M AgNO3 added NH4OH is added drop-wise Supernatant solution is decanted, 6M HNO3 is added Unknown Sample 7, 5mL pale yellow precipitate formed no change to solution no change to solution 6 drops of ammonium hydroxide, NHà 4OH, were added to the sample Nitric acid, HNO3, was unable to be added to the precipitate as no clear supernatant was formed The lack of formation of a cloudy white precipitate in the presence of silver nitrate indicated that the sample did not have chloride anions present. The subsequent addition of ammonium and re-acidification of the sample were rendered purposeless. Table 7a: Testing Unknown Sample for the presence of Iodide, I- anions 5 drops 0.1M AgNo3 added Unknown Sample 7, 5mL cloudy pale yellow precipitate formed The presence of a cloudy yellow precipitate with silver nitrate indicates presence of iodide anion. Table 7b: Testing and confirming Unknown Sample for the presence of Iodide, Ià - anions Acetic acid is added drop-wise 2 drops KNO2 added 15 drops Methylene chloride added, test tube shaken Unknown Sample, 5mL Blue Litmus Paper confirmed the solution was acidic by turning red solution turned a mustard-orange colourà 2 distinct layers formed in the test tube. The bottom layer was reddish-purple, and the top layer was an orange-brown 2 drops of acetic acid, HC2H3O2, were added to acidify sample Upon confirming the sample was indeed acidic, it reacted with the potassium nitrate to change to a mustard-orange colour. The addition of the methylene chloride formed 2 distinctly coloured layers, thus confirming that the solution had iodide anions present. Table 8: Testing and confirming Unknown Sample for the presence of Sulphate SO42- anions 0.5mL of BaCl2-CaCl2 mixture added Test tube heated, stood for 10 minutes 5 drops 6M HCl, test tube heated Unknown Sample, 3mL no precipitate formed no noticeable precipitate formed no change to solution In each instance of heating, the test tube was placed in a boiling water bath at 90oC The final heating of the test tube was for approximately 5minutes at 90oC The lack of precipitate formation in the test indicated that the sample was absent of sulphate anions. This result was further confirmed by the subsequent addition of hydrochloric acid and reheating failing to produce a precipitate. DISCUSSION: A strong acid such as H2SO4, sulphuric acid, combined with carbonate produces an effervescent reaction due to the formation of carbon dioxide. The heat felt from the test tube was a result of the exothermic reaction that the carbonate solution underwent in the presence of a strong acid. Sulfuric acid is a strong acid, but only for the first H, so it dissociates into H+ ion and the bisulfate ion, HSO4-. HSO4- is a weak acid and does not dissociate to a great extent, but it also reacts with carbonate (Dartmouth College, 2003). The presence of sulphur may have accounted for the mildly unpleasant scent wafted during the experiment. As indicated by the results of Table 1b, the formation of CO2 acted as a positive indicator for the presence of CO32- in a solution, as expressed by: 2H+(aq) + CO32-(aq) ââ â H2O(l) + CO2(g). The exposure of the produced gas, carbon dioxide, to barium hydroxide resulted in the a cloudy white precipitate due to the formation of barium carbonate as expressed by: H2O (l) + CO2 (aq) + Ba2+à à (aq) ââ â BaCO2 (s) + 2 H+(aq). The addition of 01M AgNO3, silver nitrate, to the chloride solution resulted in the formation of a white precipitate due to the formation of silver chloride as expressed by: AgNO3 (aq) + Cl-(aq) ââ â AgCl(s) + NO3 (g). It is interesting to note that chlorides are generally soluble, with the exception of lead(II) and silver chloride. When concentrated NH4OH was added to the silver chloride precipitate dissolved due to the formation of an ammine complex, [Ag(NH3)2]+. Silver nitrate is generally acidified with dilute nitric acid to prevent the precipitation of other non-halide silver salts (Brown, 2012). Nitric acid acidified the solution due to the addition of H+ ions to the solution, resulting in re-precipitation, thus definitively indicating the presence of chloride anions. This is expressed as AgCl(s) +à 2NH3(aq) ââ â Ag(NH3)2+(aq) + Cl-(aq) Ag(NH3)2+(aq) + Cl-(aq) + 2H+(aq) ââ â AgCl(s) + 2NH4+(aq) The addition of 0.1M AgNO3 to the iodide solution resulted in the formation of a cloudy yellow precipitate as expressed by: AgNO3(aq) + I- ââ â AgI(s), which as a precipitate is insoluble in concentrated ammonia. The addition of 6M acetic acid, HC2H3O2, acidified the solution, as confirmed by the litmus test. The newly acidic solution reacted with potassium nitrite, KNO2, reducing the nitrite to nitrogen dioxide as expressed by: I-(aq) + KNO2 ââ â KI(aq) + NO2(g). The liberation of iodine in the reaction resulted in a brownish change in colouration of the solution (SUNY Chemisty, 2005). The failure of the sample to turn a reddish-brown may have been a source of error due to a failure to sufficiently rinse the cleaned test tube with DI water. Methylene chloride, CH2Cl2, which is a non-polar organic compound was added to the solution reacted with the iodide in the solution to form a violet coloured layer of denser solution, which settled at the bottom of the test tube. An alternative means of testing for the presence of iodide anions would have been to use starch, which forma a characteristic blue-black complex. The addition of the barium chloride-calcium chloride mixture, BaCl2-CaCl2, to the sulfate solution resulted in the formation of an insoluble white sulphate, barium sulphate as expressed by: Ba2+(aq) + SO42-(aq) ââ â BaSO4(s). Other insoluble barium salts contain anions of weak acids (CO32-, SO32-and PO43-). Precipitation of these anions is generally prevented by acidifying the solution (Yoder, 2014). The products of the reaction were made more prominent by the catalyzing the reaction with heat, resulting in a more noticeably fine white precipitate distributed throughout the solution. The addition of 6M HCl, hydrochloric acid, served to acidify the solution, further illustrating the insolubility of the barium sulfate precipitate, thereby confirming the presence of sulphate anions. The unknown sample was placed through all confirmatory tests. It failed to react with Sulphuric acid and hydrochloric acid to produce an effervescent reaction, indicating it was carbonate absent. Unknown Sample 7 did not react with the BaCl2-CaCl2 mixture to form a precipitate regardless of heat, indicating the absence of sulphate anions. Unknown Sample 7 formed a pale cloudy yellow precipitate upon the addition of silver nitrate, immediately indicating the presence of iodide anions, disqualifying the need to testà further for chloride. The addition of acetic acid to Unknown Sample 7 provide a sufficient acidic environment for the potassium nitrate to release iodine, thus the solution appeared as a dark mustard orange. The methylene chloride confirmed the presence of iodide anion when a distinct reddish-purple layer settled at the bottom of another distinctly coloured layer of solution. CONCLUSION: Based on the results of the experiment, Unknown Sample 7 demonstrated the formation of a precipitate in the presence silver nitrate, a change in colouration when mixed with potassium nitrate, and the formation of 2 distinctly coloured layers when methylene chloride was added to the solution and shaken. In accordance with the chemical properties exhibited by the 4 known anions during the qualitative testing, it can be concluded the Unknown Sample 4 clearly demonstrated the characteristic chemical responses of a solution with I- ions present. QUESTIONS 1. An ion is an atom that has lost or gained an electron to form a charged particle. 2. An anion is a negatively charged particle due to the atom gaining one or more electrons. A cation is a positively charged particle due to the atom losing one or more electrons. 3. H2SO4(aq) + Na2CO3(aq) ââ â Na2SO4(aq) + H2O(l) + CO2(g) 4a. Aluminum ion: Group IIIA, Al3+ 4b. Sulphur ion: Group VIA, S2- 4c. Iodide ion: Group VIIA, I- 4d. Oxygen ion: Group VIA, O2- 4e. Chloride ion: Group VIIA, Cl- REFERENCES Birk, J. P. (2001, December 4). General Chemistry With Qualitative Analysis. Retrieved from Arizona State University: http://www.public.asu.edu/~jpbirk/qual/qual.html Brown, W. (2012). Chemical Tests. Retrieved from Doc Brownââ¬â¢s Chemistry: http://www.docbrown.info/page13/ChemicalTests/ChemicalTestsa.htm Dartmouth College. (2003, May). ChemLab Chapter 5. Retrieved from Qualitative Analysis of Cations: http://www.dartmouth.edu/~chemlab/chem3-5/qual_an/overview/procedure.html ScienceLab. (2005, October 10). Material Safety Data Sheet (MSDS) List. Retrieved from Science Lab: http://www.sciencelab.com/msdsList.php SUNY Chemisty. (2005, December). Anion Analysis. Retrieved from Chemistry 112: http://employees.oneonta.edu/kotzjc/LAB/Anion.pdf Tro, N. J. (2011). Essential Introductory Chemistry (4th ed.). Toronto: Prentice Hall. White, R. (2013-2014). Qualitative Analysis Part 2- Anions. Chemistry 1 Laboratory Manual, 7-9. Yoder, C. (2014, November). Qualitative Analysis of CAans and Anions. Retrieved from Wired Chemist: http://www.wiredchemist.com/chemistry/instructional/laboratory-tutorials/qualitative-analysis
Friday, August 30, 2019
Kate Chopin, the Awakening
The Awakening by Kate Chopin 1st half: Page 1-60 Plot Summary: Leonce Pontellier and Edna Pontellier take their children to Grand Isle to spend their summer vacation. While on that trip Edna learns how to swim which becomes a huge revelation to her, in a sense of gaining some control over her life. Also Edna makes a great connection with Robert Lebrun, a charming man who pursues to obtain Edna's attention and affections.As he flees to Mexico, the narrative of the story shifts to Ednaââ¬â¢s complexed feelings towards Robert and her search for social freedom. With the summer being over and Edna going back to New Orleans with her husband, Edna gradually re-evaluate her priorities and takes a more active role in her own happiness, as she starts to withdraw from some of the duties traditionally associated with motherhood and as a house-wife. Themes: * Self-destruction: The illusion of being able to control oneself, while being controlled by society and other circumstances around you wi ll eventually lead to self-destruction. Edna the protagonist is in search for social liberation, and fundamentally ends up self-destructing herself by taking an action she believes can only be controlled by herself. ) * Femininity: The restrictions and expectations put on a woman are purely on stereotypical and repressive images about a societally accepted idea of femininity. (In the era that Edna lived in, the gender roles were set in stone, men would work and women would be set to be home and take care of the kids and house, women like Edna were seen as possessions and trophies. * Identity: Dissatisfaction with the labels put on individuals can result in the loss of identity and the desire for independence outside of society. ( The discontent with the labels Edna has as ââ¬Ëwifeâ⬠, ââ¬Å"motherâ⬠has resulted in the loss of her true identity, however the desire to gain back her identity leads her to social alienation and many controversies. ) Characters: * Edna Ponte llier: The protagonist of the novel, was described as ââ¬Å"She was rather handsome than beautiful.Her face was captivating by reason of a certain frankness of expression and a contradictory subtle play of features. Her manner was engagingâ⬠(4). Wife of Leonce and a mother. Is presented as a complex and dynamic characters that develops throughout the story. Edna a very preserved individual who follows the attributes of society, develops quite aggressively from being a conserved young women to an individual who violets all of the morals that were set in her society. Robert Lebrun: A complex character who encounters himself in a love triangle with married woman, he plays a big part in Ednaââ¬â¢s awakening. As he escapes to Mexico to flee from a relationship that was not allowed to happen, leading the novel to hit the climax of the story. * Leonce Pontellier: is described as ââ¬Å"wore eyeglasses. He was a man of forty, of medium height and rather slender build; he stooped a little. His hair was brown and straight, parted on one side. His beard was neatly and closely trimmed. (1) Ednaââ¬â¢s husband, Leonce plays a big part in the novel, he is a man who treats women as properties and values, very materialist and spends his time away from home doing business. Setting: * The Awakening is set in the late nineteenth century on Grand Isle, off the coast of Louisiana, where the summers are spent. It continues to New Orleans where Edna and her family live, in a relative luxurious house in the French quarters, ââ¬Å"a very charming home [â⬠¦] it was a large, double cottage with a broad front veranda, [â⬠¦] the house was painted a dazzling white. (49) * Society in the nineteenth century was very repressed, women had to obey their husbands and duties, as Edna become more ââ¬Ëawakenedâ⬠and self-dependent, her society begins to isolate her. Literary Devices: * Children: The imagery and verbal illusion of children are present throughout the nove l. Edna is often symbolically seen as a child, her undergoing a form of re-birth as she sees the world from a fresh perspective. * Water: symbolic, water represents re-birth. Edna awakened while swimming where she realized that she could be the only one who can control her own movements. Birds: The caged birds symbolically represent Ednaââ¬â¢s entrapment in society, as well as the women in the nineteenth century in general. ââ¬Å"A green and yellow parrot, which hung in a cage outside. â⬠(1) Other Critical Approaches: * Archetypal Approach (Metamorphosis/change): Edna undergoes a sudden but dramatic transformation, going from a conservative role to an independent woman. (As Edna obeys her husband and follows the rules of society, but transforms into a woman who goes by her own rules, and dismisses every task given to her. )
Thursday, August 29, 2019
Applicability of Visualization and RFID Technology -myassignmenthelp
The work scenario is that in my organization different individuals and units perform several functions independently. Each work station is served with a computer and one server. The company is to provide each workstation with integrative linkage to facilitate communication.Ã Ã The information technology infrastructure provides a chance of using a multiple different service system. The Radio frequency identification (RFID) tags network system helps to come up with different service systems. Huang et.al (2014, p.497) defines RFID as a technology using radio waves in identifying of signals, and virtualization as a technical architecture that links different resources into one single environment. Both visualization and RFID technologies are important. The visualization system is useful because it reduces physical readers and operational costs when using information technology systems. The RFID is useful in business in tracking and identification of network infrastructures signals. The virtualization of RFID tag network system is useful in business because it provides social infrastructure like the internet. Example is the global internet network architecture that uses RFID visualized tag network system (Huang et.al. 2014, p.490). The use of RFID visualized tag network system purpose is to allow multiple service systems users to share the same infrastructure. Technologies in the world are creating are virtual networks or systems are compatible to devices and RFID tag network system (Al-Kassab et.al. 2014, p.420). Visualization is used to create virtual network address in combination with RFID infrastructure which is used to create service center location. Al-Kassab et.al (2014, p.495) explains further that business use service engines to obtained information and creating social network systems with the aid of the two technologies. Al-Kassab, J., Quertani, Z and Neely, A 2014, visualization and support management decisions models, Journal of information technology & decision making, 13 (02), pp. 407-428 Huang, W., Ding, C., Wang,S., Jing, X and Zhang, Z 2014, RFID indoor visualization positioning data, International conference systems and informatics, (pp.497-504), IEEE.
Wednesday, August 28, 2019
MANAGING PEOPLE IN FACILITIES MANAGEMENT Essay Example | Topics and Well Written Essays - 7250 words
MANAGING PEOPLE IN FACILITIES MANAGEMENT - Essay Example At this juncture, managing work load and allocating the requisite tasks in a business organization has become one of the most essential works in the modern business world. Managing the employees in an organization is also crucial in the business world. This research will comprise the context of recruitment and management of the employees. It will also enumerate certain ways that would help the companies to motivate and retain staff. Managing resources is one of the pivotal tasks required for the success of any organization. This research work will implicitly explain the various aspects by which a firm can tackle its labour resource. 1.1Work Load Planning and Work Allocation There are various approaches of workload planning and work allocation. Work load may be termed as logical classifications of aggregate work executed by an organization. Work load planning and work allocation is two very close but different terminologies. The organizational managers first analyze the amount of work load in an organization and then they allocate the following to different employees in terms of the different work allocation theories. In general, the approaches of work load planning set by an organization are almost same for all the public and private sectors (Sabharwal and Prashant 25) Approaches of Work Load Planning One approach adopted by the managers of organizations is related to simple estimation of the companyââ¬â¢s current workload and workforce. After making that inference, they enumerate the various competences of the organization. Efficient work load planning involves assessing the future work load, work force and competences in an association. Sometimes the mangers in an organization compare the workloads and work forces along with their competences in present and future. By doing so, they sufficiently get access to the surplus and gaps in the working processes. The managers introduce new plans to approximate the future workforce requirements. After a workforce p lan is estimated, the company ensures that the concerned model remains valid and observes that its mentioned objectives are executed in the working process of the firm. Thus, for the purpose of work load plans, a company uses estimation techniques, models, and theoretical approaches. The planning may be done on the basis of the type of work or the method by which the work would be executed or simply on the basis of the workers who would execute the task. Example, Gantt charts and bar diagrams are often used in business firms to execute the different operational plans (Bhatia 45). Approaches of Work Allocation There are different ways to allocate work among the workers in a company:- Contractual agreements are often introduced in the operations of a business organization. In this method, the workers are given specific contracts to complete their tasks. Sometimes the skills and experiences of the workers are also judged while allocating certain jobs to them. The more important and com plex the work is the greater skills are required from the workers. This is the theory of comparative advantage. Sometimes time it is also an important factor in work allocation. The workers who have the time to execute certain work in an ongoing organization are allotted new upcoming projects. (Wuttke 37). 1.2 Advantages of Work Load Planning and Work Allocations Proper work load planning and work allocation is the only key that helps to achieve operational success in a firm. The firm can successfully reduce its cost of manoeuvre in business with the efficient planning methods. Allocating the work to appropriate employees helps the firm to execute the requisite job promptly and effectively. Division of labour has always
Tuesday, August 27, 2019
Business letter 2 Essay Example | Topics and Well Written Essays - 250 words
Business letter 2 - Essay Example A little reflection will show that there are a couple of reasons for this. One is that Emergent Technologies has developed a unique procedure for the mass storage of information via its SuperDiscâ⠢. As you know the patent and copyright for this invention has been lying with the US Patent Office for some time now, and it is only a matter of weeks before the patent will be registered in the name of your company. This alone is sufficient to increase the value of net assets by $500,000. Another thing to be considered is your excellent business reputation over ten years of business. Your company and its products are well-known and have considerable goodwill among the business community. According to Meigs and Meigs (1993: p 474), goodwill can result because of owner or product reputation, leading to extra sales and business contacts in the marketplace. In the event of a sellout, the new buyer will gain from this goodwill that you had earned and accordingly, you can arrange for an eva luation of goodwill and even record it on the books before making the sale. A conservative estimate by us looking at industry standards puts the value of Goodwill at $500,000 for your business at this point.
Monday, August 26, 2019
Experience Through Work Module Essay Example | Topics and Well Written Essays - 2750 words
Experience Through Work Module - Essay Example Its expansion into numerous international markets has led the company into becoming a symbol of globalization, over and above, the spread of Americaââ¬â¢s life style. Moreover, the prominence it holds globally has enabled to become the topic of discussion particularly in terms of obesity, consumer responsibility, and corporate ethics. In essence, the restaurants is said to have both drive through service, and counter service in outdoor and indoor seating. In global operations, the McDonaldââ¬â¢s has become a global icon and is known as ââ¬Å"McDonaldization of the societyâ⬠. Of importance to note is that McDonaldââ¬â¢s UK has thrived in the competition field due to the presence of an excellent management team that has ensured that the Company has a strong work force especially in terms of customer satisfaction and delivery services. This has been emphasised through the Human Resource Management, which is the most powerful department in McDonaldââ¬â¢s Company. ... nagerial activities, functional areas, nature and impact of the company especially in terms of employeesââ¬â¢ satisfaction that ensures that work is done effectively. Principally, there are diverse ways in which managers perform their duties in accordance to the kind of company that he or she is mandated to work for. It is without doubt that management is crucial in every organisation or company as it works as core of a company that has a competitive edge. 2 My Responsibilities included; 1. Assisting in man power planning 2. Involved in designing job analysis 3. Determining wages and Salaries 4. Recruitment and Selection of Employees 5. Assist in performance appraisal 6. Prepare training and development of the work force 7. Employee welfare and motivation 8. Implementing of McDonaldââ¬â¢s Policies In essence, as a HR department it is crucial that a record of the future plans is keep to ensure that the company is focused on the goals and objectives that it intend to have current ly and the future. The record further entails the number of employees that intend to leave McDonaldââ¬â¢s for one reason or another. Besides, it analysis the productivity levels o f the workers in relation to the competition factor. Consequently, any technological changes that the company goes through are officially noted in relation to the expected growth in sales in the company (Barney 1991). Apparently, the HR department is solely responsible for analysing and giving job description particularly when there are vacancies in various departments in the company. Job analysis is gathering details about the duties, responsibilities, required skills, over and above the work environment. On the other hand, job description regards the tasks, and responsibilities that match particular qualifications of
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