Friday, August 16, 2019
The Impact of E-Business
An E-Business strategy allows a typical business to take advantage of Internet technology to improve communications and increase productivity. An E-Business utilizes digital media such as email, data conferencing, e-commerce, and B2B to streamline business operations. These are made possible through a network infrastructure like Local Area Networks (LANs), Wireless communication, and the Internet. Customer relationship can be improved due to fast response time and efficient business transactions. Through email, businesses can communicate with their customers instantaneously. This is important for sales, support, and marketing activities. E-commerce websites can also be utilized to sell products and perform business transactions in real-time. Customers can do their shopping online, pay electronically, and have their products delivered the next day. This reduces cost drastically because there are no more physical overheads such as shops, printed brochures and human cashiers. Collaboration with business partners is also strengthened through B2B exchanges. Using this technology, companies can partner with each other buy cheaper products placed directly from suppliers. At the same time, they can integrate and synchronize their individual business operations. One company might handle product design, while others manage procurement, shipping, and marketing. This translates directly to reduced cost and improved business efficiency. E-Business can also increase a company's internal productivity. Using Local Area Networks (LANs) and Intranet, employees can share information faster and more efficient than traditional phone or paper communication. Various services such as email, file transfer, directory services, and knowledge management systems can increase productivity and reduce manual work. Wireless networking can also allow executives to be connected anywhere and anytime, so they can manage their business more effectively. A company can transform to become an E-Business by adopting Internet technology along with certain business considerations and decisions. The main strategy should be aligned with the main goal to reduce cost and increase the company's productivity. The importance of the transition should always be highlighted, emphasizing these two benefits. The reason for this is because most people are resistant to change, especially those related to technology. They view these as a threat to their jobs, to the status quo, and to internal politics. Studies will have to be made that will show the return on investment (ROI) and how it will improve the business as a whole. A transition plan should also be made so that the adoption of the technology would be much easier and not drastic. User education and training is also an important aspect because it helps people understand the benefits they can get from the E-Business. Considerable investments will also have to be made in IT consulting, hardware, and software. IT companies and consultants will be hired for the the initial setup of the system, and training for the users who will comprise the IT department. This department would then have the expertise to continue the transition and implement technology-related changes. Computer hardware such as personal computers and network cables will be purchased and changes in the office layout will be implemented. New guidelines and protocols should be also created in order to maintain system integrity and security. The company will be exposed to new threats such as unauthorized access, viruses, worms, hackers, and spam. Because of this, security procedures such as Intrusion Detection and Disaster Recovery should be implemented. Computer and network policies should also be in place so that these risks will be minimized.
Thursday, August 15, 2019
Healthcare Analysis Essay
1. Differentiate among the terms strategic management,strategic thinking, strategic planning, and managing strategic momentum. Which of these activities is most important in a healthcare organization and why? ANS: Strategic management consists of the analysis, decisions, and actions an organization undertakes in order to create and sustain competitive advantages. strategic management is concerned with the analysis of strategic goals (vision, mission, and strategic objectives) along with the analysis of the internal and external environment of the organization. Next, leaders must make strategic decisions. These decisions, broadly speaking, address two basic questions: What industries should we compete in?How should we compete in those industries? These questions also often involve an organizationââ¬â¢s domestic as well as its international operations. And last are the actions that must be taken. Decisions are of little use, of course, unless they are acted on. Firms must take the necessary actions to implement their strategies. This requires leaders to allocate the necessary resources. Strategic thinking is considered a key thought process of strategic management framework; is defined as the generation and application of unique business insights and opportunities, to create competitive advantage for a firm or organisation. It can be done individually, as well as collaboratively among key people who can positively alter an organisationââ¬â¢s future. Group strategic thinking create more value by enabling a proactive and creative dialogue, where we gain other peopleââ¬â¢s perspectives on critical and complex issues which is an important benefit in todayââ¬â¢s highly competitive and fast-changing business landscape. Strategic planning is an organizationââ¬â¢s process of defining its strategy, or direction, and making decisions on allocating its resources to pursue this strategy. In order to determine the direction of the organization, it is necessary to understand its current position and the possible avenues through which it can pursue a particular course of action. Generally, strategic planning deals with several key questions like 1 ââ¬Å"What do we do?â⬠2 ââ¬Å"For whom do we do it?â⬠3 ââ¬Å"How do we excel?â⬠Strategic momentum is the tendency to maintain or expand the emphasis and direction of prior strategic actions in current strategic behaviour. The most important role as leader of an organization is strategy. The best way to sustain the momentum is by following the guidelines of the Essentials for Successfully Implementing the Strategic Plan and to continue to deploy the small group of people who share the vision and are engaged in helping you implement it. According to me strategic management is the most important activity in a healthcare organization, because a well-formulated strategy can bring various benefits to the organization in present as well as in future. 1 Strategic management takes into account the future and anticipates for it. 2 A strategy is made on rational and logical manner, thus its efficiency and its success are ensured. 3 Strategic management reduces frustration because it has been planned in such a way that it follows a procedure. 4 It brings growth in the organization because it seeks opportunities. 5 With strategic management organizations can avoid helter & skelter and they can work directionally. 6 Strategic management also adds to the reputation of the organization because of consistency that results from organizations success. 7 Often organizations draw to a close because of lack of proper strategy to run it. With strategic management organizations can foresee the events in future and thatââ¬â¢s why they can remain stable in the market. 8 Strategic management looks at the threats present in the external environment and thus organizations can either work to get rid of them or else neutralizes the threats in such a way that they become an opportunity for their success. 9 Strategic management focuses on proactive approach which enables organization to grasp every opportunity that is available in the market .2. List, describe, differentiate, and provide examples of the different levels of strategic management. ANS: 1 Corporate level 2 Divisional level 3 Organizational level 4 Unit level Corporate level strategies addresses questions like,â⬠what business should we be inâ⬠¦.?â⬠For example if we take Trinity, what business should we do..? Health care, including hospitals, long term care units, hospices etc. The other question would be what other options should Trinity consider like mental health centers. Divisional level strategies are more focused and provide direction for a single business type. For Example Trinity Health, strategies must be developed for separately for hospital division, out patient units, hospice care etcâ⬠¦.. how many hospitals are optional .. or what markets are available for new chain of hospitalsâ⬠¦. Organizational level Strategies includes strategies made at an individual organizational level like each hospital in Trinityââ¬â¢s hospital division may develop their own strategies depending upon the present market conditions. Unit level Strategies support organizational strategies through accomplishing various objectives. Unit operational strategies may be developed within departments of an organizations like a hospital with different units, example Medicine department, Surgery unit or paediatric unit etc
Wednesday, August 14, 2019
Citric Acid Cycle
Describe the role of the citric acid cycle as a central metabolic mechanism. Explain what happens to the cellsââ¬â¢ abilities to oxidize acetyl CoA when intermediates of the cycle are drained off for amino acid biosynthesis. Glucose is a source of energy that is metabolized into glycolysis to pyruvate yielding ATP. To become more efficient, pyruvate must be oxidized into carbon dioxide and water. This combustion of carbon dioxide and water to generate ATP is called cellular respiration (Tymoczko, Berg & Stryer, 2013, p. 315). In eukaryotic cells, this aerobic process is used because of the efficiency.Cellular respiration is divided into parts: carbon fuels are completely oxidized with a concomitant generation of high transfer potential electrons in a series of reactions called citric acid cycle, tricarboxylic acid cycle, or Krebs cycle (Tymoczko, p. 318); the acetyl groups are fed into the citric cycle which are oxidized to CO2 and the energy released in conserved reduced electron carriers- NADH and FADH; the high transfer potential electrons transferred to oxygen to form water in a series of oxidation-reduction reactions called oxidative phosphorylation (Tymoczko, p.à 318).The citric acid cycle takes place in the mitochondria and is the central metabolic hub in the cell; the gateway to aerobic metabolism of all fuel molecules (Tymoczko, p. 318). This cycle is important source for the building blocks of molecules such as amino acids, nucleotide bases, and porphyrin. Pyruvate can convert into different molecules depending on the aerobic (acetyl coenzyme A) or anaerobic condition (lactic acid or ethanol). In the presence of oxygen, acetyl CoA is able to enter the citric acid cycle because this is the most acceptable fuel input into the cell.The path that the pyruvate takes depends on the energy needs of the cell and the oxygen availability (Tymoczko, p. 318). Pyruvate dehydrogenase complex consist of three distinct enzymes each with its own active site: Pyru vate dehydrogenase catalyzes the decarboxylation of pyruvate and the formation of acetyllipoamide, dihydrolipoyl transacetylase forms acetyl CoA, and dihydrolipoly dehydrogenase regenerates the active transacetylase (Tymoczko, p. 319).These three enzymes participate with five coenzymes: thiamine pyrophosphate, lipoic acid, coenzyme A, NAD+, and FAD. Acetyl CoA undergoes oxidation by donating the acetyl group to the four-carbon compound oxaloacetate to form the six-carbon citrate. Citrate is transformed to isocitrate (six-carbon molecule), that is dehydrogenated with the loss of CO2 (twice) to yield a five-carbon compound a-ketoglutarate (oxoglutarate). A-ketoglutarate undergoes loss of CO2 yielding a four-carbon succinate and second molecule of CO2.Succinate is enzymatically converted into a three step four-carbon oxaloacetate. Citric acid cycle removes electrons from citrate and uses these electrons to form NADH and FADH2. These electrons carriers yield nine molecules of ATP when o xidized by O2 in oxidative phosphorylation. Electrons released in the reoxidations of NADH and FADH2 flow through a series of membrane proteins (electron-transport chain) generating a proton gradient across the membrane. This proton gradient is used to generate ATP from ADP and inorganic phosphate (Tymoczko, p. 330).The citric acid is comprised of two stages: Each turn of the cycle, one acetyl group (two-carbon) enters the acetyl-CoA and two molecules of CO2 leave-one molecule of oxaloacetate is used to form citrate then metabolized to a four carbon molecule; the remaining four carbon molecule is metabolized after many reactions- oxaloacetate is regenerated. The citric acid cycle has eight steps: 1. The formation of citrate is the condensation of acetyl-CoA with oxaloacetate to form citrate and is catalyzed by citrate synthase. This occurs by the condensation of four-carbon unit, oxaloacetate, and a two-carbon unit, the acetyl group of acetyl CoA.Oxaloacetate reacts with acetyl CoA and water to yield citrate and CoA (Tymoczko, p. 330). 2. The formation of isocitrate via cis-Aconitate. The enzyme aconitase catalyzes the reversible transformation of citrate to isocitrate through formation of tricarboxylic acid cis-aconitate. Citrate is isomerized into isocitrate to enable the six carbon unit to undergo oxidative decarboxylation allowing a dehydration and hydration step of citrate (Tymoczko, p. 332). Aconitase can promote the reversible addition of H2O to double bond of enzyme-bound cis-anonitate in two ways: one leading to citrate and the other to isocitrate.3. Oxidation of isocitrate to a-ketoglutarate and CO2. Isocitrate dehydrogenase catalyzes oxidative decarboxylation of isocitrate to form a-ketoglutarate. The two forms of isocitrate dehydrogenase require NAD+ as electron acceptor and NADP+. This intermediate reaction is oxalosuccinate (unstable alpha-ketoacid). The enzyme loses CO2 to form alpha-ketoglutarate which generates the first high-transfer potentia l electron carrier in the cycle NADH through oxidation (Tymoczko, p. 332). 4. Oxidation of a-ketoglutarate to succinyl-CoA and CO2.Oxidative decarboxylation of a-ketoglutarate is converted to succinyl-CoA and CO2 by the a-ketoglutarate dehydrogenase complex. During this portion of citric acid cycle, the two carbon atoms have entered the cycle and two carbon atoms have been oxidized to CO2. The electrons from oxidations are captured in two molecules of NADH (Tymoczko, p. 333). 5. Conversion of Succinyl-CoA to succinate. Succinyl-CoA has a thioester bond with a strong negative standard free energy of hydrolysis (six-carbon citrate from the four-carbon oxaloacetate and the two-carbon fragment).The energy released in the breakage of the bond is used to drive the synthesis of a phosphoanhydride bond in either GTP or ATP. The enzyme that catalyzes the reaction is succinyl-CoA synthetase. In tissues that require large amount of cellular respirations, ADP predominates whereas anabolic react ions require GDP/GTP (Tymoczko, p. 334). The methylene group (CH2) is converted into a carbonyl group (C=O) in three steps: an oxidation, hydration, and a second oxidation reaction (Tymoczko, p. 335). The energy produced and extracted in the forms of FADH2 and NADH. 6.Oxidation of succinate to fumarate. Succinate formed from succinyl-CoA is oxidized to fumarate by flavoprotein succinate dehydrogenase. FAD is the hydrogen acceptor in the reaction. Succinate dehydrogenase is directly associated with the electron-transport chain transferring two electrons directly from FADH2 to coenzyme CoQ; CoQ passes electrons to the oxygen acceptor (Tymoczko, p. 334). Succinate is oxidized to fumarate; starting the next step of hydration of fumarate to form L-malate. 7. Hydration of fumarate to malate. The hydration of fumarate to L-malate is catalyzed by fumarase.Malate is oxidized to form oxaloacetate and NAD+ is the hydrogen acceptor (Tymoczko, p. 335). 8. Oxidation of Malate to oxaloacetate. Thi s is the last reaction of the citric acid cycle. NAD-linked L-malate dehydrogenase is the oxidation of L-malate to oxaloacetate. The citric acid is considered important in the central metabolic mechanism because: it is the starting points for synthesis of a variety of intermediate compounds such as the metabolism of sugars and amino acids; the metabolism of amino acids and lipids; and it links anaerobic metabolism to aerobic metabolism.The pathway of the citric acid cycle is the intermediate hub of metabolism that serves to fuel many types of compounds. The intermediates are drawn out of the cycle to be used as precursors in many varieties of biological pathways. The citric acid cycle is amphibolic pathway serving as catabolic and anabolic processes. The oxidative catabolism of carbohydrates, fatty acids, and amino acids through reactions serve as precursors. For example, amino acids such as aspartate and glutamate, the carbons of oxaloacetate and a-ketoglutarate build other amino a cids like purine and pyrimidine nucleotides.Oxaloacetate is converted to glucose in gluconeogenesis. Succinyl-CoA is an intermediate in the synthesis of the prophyrin ring of heme groups serving as oxygen carriers (blood) and electron carriers such as cytochromes (Retrieved from Foundations of biochemistry). The mechanisms of the citric acid cycle complement each other by reducing the rate of the formation of acetyl CoA when the energy of the cell is high and biosynthetic intermediates are abundant. This energy is abundant and the cycle can provide a source of building blocks for biomolecules such as nucleotide bases, proteins, and heme groups.This depletes the intermediates and when the cycle needs replenishment of the intermediates, anaplerotic reactions occur (Tymoczko, p. 343). Describe the 3 steps in photosynthesis, detailing the interrelationships among them. (Discussion in the online classroom. ) The three steps part of photosynthesis process involves capturing energy from th e sunlight; using energy to make ATP and reducing power in the form of NADPH; and using ATP and NADPH to power the synthesis of organic molecules (carbohydrates) from CO2 in the air (carbon fixation).There are two types of reactions that take place to ensure the process of photosynthesis: the light-dependent reactions and the light-independent reactions (Calvin cycle). Light-dependent reactions provide raw materials such as ATP serving as a source of energy and NADPH provides the reducing power (taftcollege. edu). Light reactions result in the creation of reducing power for the production of NADPH, the generation of a transmembrane proton gradient for the formation of ATP, and the production of O2 (Tymoczko, p.à 404).The Calvin cycle (C3 photosynthesis) is the pathway that assembles the new molecules which takes place in the stroma of the chloroplasts (Retrieved from Taft College website). Chloroplasts are organelles in which photosynthesis takes place. The main role of chloroplas t is to capture light energy and convert the electromagnetic radiation into chemical energy for the essence and is the key to life on planet earth. Chloroplasts have an inner and outer membrane.The inner membrane surrounds a space called the stroma that contains soluble enzymes (rubisco-important in the Calvin cycle) that reduce power and ATP converting CO2 into sugar (Tymoczko, p. 390). In the stroma, membranous discs called thylakoid are aligned in stacks which are impermeable to most molecules and ions whereas the outer membrane of chloroplast has a permeable membrane to small molecules and ions (Tymoczko, p. 390). Thylakoids have a large surface area for light absorption and the space within them allows rapid accumulation of protons (Retrieved from Taft College website).Chloroplasts contain chlorophyll, a green pigment found inside the thylakoid membranes. Hundreds of chlorophyll molecules function together like an antenna system for the capture of light photons resulting in che mical electron excitement (Gu, 2013). The region of chemical excitation, called an exciton, migrates through the chlorophyll antenna until it reaches a point in the array where it can be funneled into a chemical system (Gu, 2013). Chlorophyll has two types: chlorophyll a, primarily in green plants has less absorption than chlorophyll b.Chlorophyll b has accessory pigments such as carotenoids which give the colors of yellows and reds in plants. The accessory pigments are arranged in numerous light-harvesting complexes that completely surround the reaction center; these pigments absorb light and deliver the energy to the reaction center by resonance energy transfer for conversion into chemical forms (Tymoczko, p. 394). The chlorophyll molecules are arranged in groups called photosystems. There are two types of photosystems are Photosystem I and Photosystem II.When chlorophyll molecule absorbs light, energy from the light raises chlorophyll electron molecules to a higher energy state k nown as being photoactivated (Retrieved from Taft College website). Excited electrons anywhere within the photosystem are then passed on from one chlorophyll molecule to the next until they reach a special chlorophyll molecule at the reaction center of the photosystem leading to a chain of electron carriers (Retrieved from Taft College website). The light-dependent reactions start within Photosystem II.Photosystem II responds to wavelengths shorter than 680 nm sending electrons through a membrane-bound proton pump called cytochrome bf and then to photosystem I to replace the electrons that are donated to photosystem I to NADP+. The electrons in the reaction center of photosystem II are replaced when two molecules of water are oxidized to generate a molecule of oxygen (Tymoczko, p. 395). When excited electrons reach the special chlorophyll molecule at the reaction center of PS II, this chain of electron carriers found within the thylakoid membrane releases energy.The energy is used t o pump protons (hydrogen ions) across the thylakoid membrane into the space within the thylakoid forming a proton gradient. The protons can travel back across the membrane, down the concentration gradient, passing through ATP synthase. ATP synthase is located in the thylakoid membrane and it uses the energy released from the movement of protons down their concentration gradient to synthesize ATP from ADP and inorganic phosphate (Retrieved from Taft College website). This proton gradient is the driving force for ATP production (Tymoczko, p.395). The synthesis of ATP in this manner is called non-cyclic photophosphorylation (uses the energy of excited electrons from photosystem II). The electrons from the chain of electron carriers are then accepted by Photosystem I. Photosystem I responds to light within wavelengths shorter than 700 nm and responsible for providing electrons to reduce NADP+ to NADPH, requiring a reduction in power of the electrons (Tymoczko, p. 395). Electrons are rep laced from previous electrons lost from Photosystem I.Photosystem I absorbs light and becomes photoactivated leading to excited electrons that are raised to a higher energy state. These electrons are passed along a short chain of electron carriers and used to reduce NADP+ in the stroma (Retrieved from Taft College website). The powerful reductant ferredoxin reacts with NADP+ forming NADPH. When there is a shortage of NADP+ this inhibits the normal flow of electrons. When this occurs, the alternative pathway for ATP production (cyclic photophosphorylation) begins with Photosystem I absorbing light and becoming photoactivated.The excited electrons from Photosystem I are passed to a chain of electron carriers between Photosystem I and II. These electrons travel along the chain of carriers back to Photosystem I causing the pumping of protons across the thylakoid membrane creating a proton gradient (Retrieved from Taft College website). The protons move back across the thylakoid membrane through ATP synthase producing ATP. The light dependent reactions produce oxygen as a waste product. The special chlorophyll molecules at the reaction center pass electrons to the chain of electron carriers, becoming positively charged.Within the thylakoid space, water molecules are split due to the enzyme at the reaction center known as photolysis (Retrieved from Taft College website). Oxygen and H+ ions are formed, leading to the waste product of oxygen which most living organisms need on earth. The dark phase of photosynthesis starts with the reaction of CO2 and ribulose 1, 5-bisphosphate to form two molecules of 3-phosphoglycerate (Tymoczko, p. 418). The light-independent reactions of photosynthesis occur in the stroma of the chloroplast and involve the conversion of carbon dioxide and other compounds into glucose.The light-independent reactions can be split into three stages; these are carbon fixation, the reduction reactions and finally the regeneration of ribulose bisphospha te ââ¬â collectively these stages are known as the Calvin Cycle (Retrieved from Taft College website). During carbon fixation, carbon dioxide in the stroma (which enters the chloroplast by diffusion) reacts with a five-carbon sugar called ribulose bisphosphate (RuBP) to form a six-carbon compound which is catalyzed by an enzyme called ribulose bisphosphate carboxylase (large amounts present within the stroma), known as rubisco (Retrieved from Taft College website).Rubisco is the most abundant enzyme in plants and most abundant protein in the biosphere (Tymoczko, p. 409). As soon as the six-carbon compound is formed, it splits to form two molecules of 3-phosphoglycerate. 3-phosphoglycerate is then used in the reduction reactions (Retrieved from Taft College website). 3-phosphoglycerate is reduced during the reduction reactions to a three-carbon sugar called hexose phosphate that consist of 3 types of isomeric forms: glucose 1-phosphate, glucose 6- phosphate, and fructose 6-phosph ate known as hexose monophosphate pool (Tymoczko, p.à 409).Energy and hydrogen is needed for the reduction that are supplied by ATP and NADPH and H+ (both produced during light-dependent reactions). The condensation of many molecules of glucose phosphate forms starch in the form of carbohydrates which is stored in plants. The hexose phosphates produced during the reduction reactions, only use one to synthesize glucose phosphate, the other phosphates will be used to regenerate RuBP (Retrieved from Taft College website).The regeneration of RuBP is essential for carbon fixation to continue. Five hexose phosphate molecules will undergo a series of reactions requiring energy from ATP, to form three molecules of RuBP which are consumed and produced during light-independent reactions forming the Calvin cycle. The actual operation of photosynthesis reactions, called the carbon reduction or Calvin cycle, may be summarized as follows: 6 CO2 + 6 RudP ââ¬â-> 6 RudP + 1 Hexose # of carbons 6 + 30 ââ¬â-> 30 + 6
Tuesday, August 13, 2019
Analyse the data sets provided and report the results of the data Essay
Analyse the data sets provided and report the results of the data analysis in the most appropriate format - Essay Example Given that there are three dependent variables that are known to interact with each other (Bandura, 1989); the MANOVA was chosen as the ideal test of analysis. The MANOVA is best used when the dependent variables are moderately correlated; and are liable to affect each other. The omnibus test ensures that there is reduced chance of a Type I error by taking shared covariance of dependent variables into account. The null and alternative hypotheses postulated for this study are: Null Hypothesis 1: There is no significant difference in the mean cognitive anxiety between the winning positions. Alternative Hypothesis 1: There is a significant difference in the mean cognitive anxiety between the three winning positions. Null Hypothesis 2: There is no significant difference in the mean somatic anxiety between the three winning positions. Alternative Hypothesis 2: There is a significant difference in the mean somatic anxiety between the three winning positions. Null Hypothesis 3: There is no significant difference in the mean self confidence between the three winning positions. Alternative Hypothesis 3: There is a significant difference in the mean self confidence between the three winning positions. Data was collected from 83 athletes of both genders (40 male and 43 female participants) within the age range of 18 to 43 years. The participants were not evenly distributed across the three categories; and data was available on 36 first place holders, 29 second place holders and 18 third place holders. The mean scores, standard deviations and Standard error are noted in Table 1.1 Table 1.1 Descriptive Statistics of Psychological Variables Relative to Winning Positions Dependent Variables Wining Position N Mean SD SE Cognitive Anxiety 1 36 24.17 5.316 0.886 2 29 22.93 6.035 1.121 3 18 24.11 5.040 1.188 Total 83 23.72 5.487 0.602 Somatic Anxiety 1 36 23.56 6.068 1.011 2 29 22.69 6.077 1.129 3 18 23.28 6.515 1.536 Total 83 23.19 6.106 0.670 Self Confidence 1 36 22.61 4.777 0. 796 2 29 19.17 4.489 0.834 3 18 18.67 3.970 0.936 Total 83 20.55 4.817 0.529 The data was analyzed using MANOVA, and was tested using all four tests. The F value using the Wilks' lambda was 3.488 which was significant beyond the 0.01 level of significance [Wilks' = 0.777; F (6,156) = 3.488; p
Monday, August 12, 2019
Work experince Essay Example | Topics and Well Written Essays - 1250 words
Work experince - Essay Example I am looking forward to working with you in training new staff on calibration of meters, periodic maintenance of the machines and other duties such as meter assembly and loading. I am self driven, quick learner, and team player and can work in challenging environments. This vacancy will provide me with a good opportunity to apply my academic knowledge, skills and vast experience serving your clients. If accorded this opportunity, I promise to meet and exceed your performance set targets. Attached herewith is a copy of my curriculum vitae and testimonials of my academic and professional qualifications. I am highly committed, confident, self starter and visionary person excited byà challenges and proactive team player who can work with minimal or no supervision. Ià possess good personality and excellent communication and leadership skills. RPL is a useful process, which helps the learner to acknowledge previous study, working experience and life which match the learning outcomes. There are two types of electric meters which are single-phase meter that is mainly used in homes and Althea Ni type which is a three-phase meter that is mainly used in industrial plants. The co0unter is important as it measures the legal and calibrates the relationship between institutionââ¬â¢s power and other counters. The main parts of the counter include the CD-aluminum, permanent magnet; file the heart of the current, rotate adjustment lever, caliber number, small caliber loads, and heart of tension file (Anand 49). The internal structure of a number will consist of the following parts which are range torque (1), rotor (2), bearing (3), registrar (4) and media settings (5). The torque consists pf two parts which are group difference of tension which has the file and heart of iron which are large files with insulated wire varnishing and the current flowing
A Good Manager Essay Example | Topics and Well Written Essays - 500 words
A Good Manager - Essay Example Lynn Tilton is among the intelligence leaders and manager taking into consideration her behavior and positive traits she portrays and articulates in her routine services within the private equity and an auto-part company she owns. One of the bases of her leadership and management qualities is that she is honesty. As a good manager and a leader, you are required to raise the company bar even higher than the anticipated level keeping in mind that your employees are among the top reflection entity personnel who requires honest and ethical behavior value for the purpose of their effective service delivery. We learn that Lynn considers herself as an established leader and a manager who strips and flips not for men but her company which she says she hold that company long and close to her heart. Becoming a good leader and a manager too requires the ability of delegation, which comes because of brand vision finessing and characterized through organized and efficient business environment in any prevailing business. Trust and believe in your team, as a manager is the only key to delegate ability since this makes a manager to determine the strengths and weakness prevailing in any company and in turn capitalize on them for the purpose of profit maximization.
Sunday, August 11, 2019
Cherokee removal Essay Example | Topics and Well Written Essays - 750 words
Cherokee removal - Essay Example The removal has been regarded as a tragic incident in the history of Cherokee nation. They called it Nu Na da ul Tsum yi in their own language that mans a place where they cried. During the Indian removal efforts there were several other nations also removed from the American South and other regions including Choctaws, Chickasaws and Creek Indians etc. The Cherokee nation resisted against the removal efforts and also hired some lawyers to combat with this forces relocation but eventually they had to leave their homes in South and were forcefully moved towards North America. The removal of Cherokees was result of passage of Indian Removal Act by Congress in 1830 in which the federal government was given the power to forcefully relocate any Native American nation from east to west side of the country. The act also affirms that the Native Americans have to be compensated for the removal but in practical the process was not undertook very fairly and the most of the eastern tribes had to face high level of ethnic discrimination from the authorities that eventually caused decline in their numbers (Perdue and Green, p127). The Cherokees were inhabited in Georgia since the 1791 treaty with the U.S government but after the discovery of gold in that place, the government decided to reside white people in Georgia. In 1830, the whites reclaimed their lands but they had to face strong protest from the Cherokees who took the case of the U.S Supreme Court where the decision came out in their favour. In 1838, the U.S. President and Congress forced Native Americans to leave their lands and settle down in their new homes in Indian Territory. Almost one third population of Cherokee nation was died during this process due to which this incident is also referred as Trail of Tears in the history of United States. The efforts of Indian removal were backed by the thought that the Native Americans including Cherokees settled in Georgia and other south states are barrier in the way of p rogress of the nation and it is imperative to remove these people from these lands to carry on the process of development and progression. The government of U.S negotiated with some tribes and convinced them to leave their lands and move towards the other territory however, the Cherokee nation refused and condemn the policy of U.S government and announced their strong opposition for this decision. In 1823, there was a decision made by Supreme Court in which it was decided that the Indians only have the right to occupy lands in US but they donââ¬â¢t have right to hold the title for these lands because their right of occupancy is not powerful as the US right of discovery. It was a great threat to the Indians and the Cherokees responded towards this policy with great concern and worried. They formulated the policies of restricting the sale of the land to the government so that they could protect it from going into the hands of the government and white people. \ The Cherokees adopted several nonviolent policies in response to the US Indian removal policies. They has several options in front of them however they adopted Anglo American practice and got involved in some constructive activities and developments like large scale farming, seeking western education and slave holding etc. As a result of these efforts they were regarded as the civilized Indian tribe however, these steps made the whites indignant
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