Saturday, February 22, 2020
Economy of Ireland Essay Example | Topics and Well Written Essays - 3500 words
Economy of Ireland - Essay Example Inflation rate is a low two percent (2.7%). Ireland has chalked up a strong annual growth in Gross National Product and Gross Domestic Product. The National Development Plans are giving the economy a boost. Ireland can be considered as a small, open, trade-dependent economy and is one of the fastest growing economies in the developed world. Its openness is reflected in the international mobility of capital and by encouraging levels of foreign direct investment. With low tax rates, Ireland presents a very attractive economic climate for international and local businesses. In the field of international trade, the UK is the most important exporter to Ireland accounting for thirty-seven percent (37.1%) of all the Irish imports. The second biggest exported is the US at three percent (3.8%). The third exporter is Germany at nine percent (9.2%). Finally, the Netherlands accounts for more than four percent (4.5%.) The Central Bank and Financial Services Authority of Ireland (CBFSAI) consists of two entities. The first entity is the Central Bank, which carries responsibility for the monetary policy functions, financial stability, economic analysis and currency, and payment systems. The second entity is the Irish Financial Services Regulatory Authority, which has the mandate of safeguarding the financial sector and providing consumer protection. The CBFSAI has a supervisory responsibility for over 1000 financial entities in Ireland, of which more than 80 are banks and around 400 are credit unions.The banking sector is a reliable contributor of the country's economic growth. The banking sector contributed six percent (6) to the Irish GNP in 2005 compared to three percent (3%) in 1998. Employment in banking has risen from 29,400 in 1998 to 37,700 in 2005, of which 82% represents retail banking. These retail banks have over a thousand branches and satellite offices. TOP IRISH BANKS The two major Irish banks, AIB Bank and Bank of Ireland, are both publicly listed companies. These companies have generated their capital through the Irish Stock Exchange. In each case, ownership is widely diversified, with over 100,000 shareholders, most of whom are private individuals with relatively small holdings. In the case of AIB Bank, 41 per cent of shareholders own fewer than 1,000 shares each, while in the case of Bank of Ireland this figure is 54 per cent. Taken as a whole, these small bank shareholders own only 1 per cent of the total bank shares. Moreover, the Irish clients normally transact with the bank branches for retail banking services. They continue to be the predominant form of access to banking services. The growth of new suburbs and the emergence of suburban shopping malls has led to the opening of bank branches in or near these centres. The top four banks in Ireland are Allied Irish Bank, Bank of Ireland, the National Irish Bank and Ulster Bank. Allied Irish Banks p.l.c. was formed in 1966 when three banks merged. The three banks had been established in 1825. The AIB's emphasis is on business banking in Britain in the 1970s. In the 1980s, the AIB formed a subsidiary, the FMB, which marked the
Thursday, February 6, 2020
Expression of Motivation to Become a Physician Assistant Personal Statement
Expression of Motivation to Become a Physician Assistant - Personal Statement Example First, whilst undertaking my undergraduate degree in Science and Biology from the Azad University of Tehran that is located in Iran, I was able to gain background knowledge about human health and ways through which the health of an individual can be improved or maintained in a desirable state. Secondly, in my pursuit to gain a deeper understanding and knowledge, and even make advancement in my career I undertook a postgraduate degree majoring in health administration. Through this postgraduate degree, I gained knowledge on leadership, management, and administration skills that are applicable in public health systems, and health care facilities. Additionally, I trained as a Pharmacy Technician at the Boston Reed College, in the year 2009 and in the period of 2004 to 2007, I completed 60 credits towards an associate degree in Nursing at the Glendale Community College. From my educational background, it is evident that I have a deep desire and I am highly motivated to advance in my medi cal career which includes becoming a PA. In regards to work experience, I have had the opportunity of working in the healthcare industry for the past eight years. For instance, I have been an intern at the Northridge Hospital medical center for the past year and as an intern, I was able to obtain practical knowledge and further learn routine practices of PA. I worked under the supervision of a safety officer to ensure that all joint commission guidelines for the physical environment of care at the hospitals remain compliant. I was also charged with the duty of ensuring safety and facility quality controls comply with local, federal, state regulations and further provided consultations. Prior to my internship at the Northridge hospital, I worked at the cardiologist office for seven years as a medical assistant where I interacted with patients and PAs, thereby becoming familiar with the roles of a PA.
Tuesday, January 28, 2020
Chemistry thermo lab, Hesss Law Essay Example for Free
Chemistry thermo lab, Hesss Law Essay Introduction: In this lab, we will be determining the change in enthalpy for the combustion reaction of magnesium (Mg) using Hessââ¬â¢s law. Procedure: 1. React about 100 mL of 1.00 M hydrochloric acid with 0.80 g of MgO. Note the change in temperature and any qualitative data. 2. React about 100 mL of 1.00 M hydrochloric acid with 0.50 g of Mg. Note the change in temperature and any qualitative data. Raw Data: Quantitative: Reaction, trial Mass (à ± 0.01 g) Initial temperature (à ± 0.1à ¢Ã ° C) Final temperature (à ± 0.1à ¢Ã ° C) Volume of HCl (à ± 0.05 mL) Reaction 1, Trial 1 0.80 22.0 26.9 100.00 Reaction 1, Trial 2 0.80 22.2 26.9 100.00 Reaction 2, Trial 1 0.50 21.6 44.4 100.00 Reaction 2, Trial 2 0.50 21.8 43.8 100.00 Qualitative: 1. Hydrochloric acid is colorless and odorless 2. Magnesium tape is shiny after cleaning it from oxidants, increasing its purity. 3. In both reactions, the solution became bubbly. 4. There was a strong odor from the reaction. Data Processing: Trial 1: Reaction 1: First, we have to calculate the ÃâT by subtracting the final temperature by initial temperature: 1. 2. 3. Now we calculate the mass of the solution, assuming it has the density as water: 1. 2. 3. 4. Now, we can use q=mc ÃâT to calculate the energy gained by the solution: 1. 2. 3. Therefore: 1. Now, we have to calculate the number of moles for MgO: 1. 2. 3. We can now calculate the change in enthalpy by dividing the q of the reaction by the moles of the limiting reagent: 1. Now, we do reaction 2, trial 1 so we can use Hessââ¬â¢s law to calculate the change in enthalpy of formation, but first we are going to calculate the uncertainty in this expression: First, we calculate the uncertainty for the: 1. 2. 3. Now for mass: 1. 2. As for the energy gained: 1. 2. Now for the energy of the reaction: 1. It is multiplied by an integer (-1) so it is the same unc. As for the moles: 1. 2. Finally, the change in enthalpy: 1. 2. 3. Reaction 2: First, we have to calculate the ÃâT by subtracting the final temperature by initial temperature: 1. 2. Now we calculate the mass of the solution, assuming it has the density as water: 1. 2. 3. Now, we can use q=mc ÃâT to calculate the energy gained by the solution: 1. 2. Therefore: 1. Now, we have to calculate the number of moles for MgO: 1. 2. We can now calculate the change in enthalpy by dividing the q of the reaction by the moles of the limiting reagent: 1. I will now calculate the uncertainties: First, we calculate the uncertainty for the: 1. 2. Now for mass: 1. 2. As for the energy gained: 1. 2. Now for the energy of the reaction: 1. It is multiplied by an integer (-1) so it is the same unc. As for the moles: 1. 2. Finally, the change in enthalpy: 1. 2. 3. Now, we use Hessââ¬â¢s law to calculate the change of enthalpy of formation: 1. MgO(s) + 2HCl(aq) MgCl2(aq) + H2O(l) 2. Mg (s) + 2HCl(aq) MgCl2(aq) + H2 (g) 3. H2(g) + 0.5 O2(g) H2O(l) (given) By reversing reaction number 1, we can get our targeted reaction: Mg (s) + 0.5 O2(g) MgO(s) Now to calculate the change of enthalpy, which will be the change of enthalpy of formation? 1. 2. Our final result is: 1. Mg (s) + 0.5 O2(g) MgO(s) Random error and percent error: We can calculate the random error by just adding the random errors of the component reactions: 1. 2. 3. As for the percent error: 1. 2. 3. Trial 2: Reaction 1: First, we have to calculate the ÃâT by subtracting the final temperature by initial temperature: 1. 2. Now we calculate the mass of the solution, assuming it has the density as water: 1. 2. 3. Now, we can use q=mc ÃâT to calculate the energy gained by the solution: 1. 2. 3. Therefore: 1. Now, we have to calculate the number of moles for MgO: 1. 2. 3. We can now calculate the change in enthalpy by dividing the q of the reaction by the moles of the limiting reagent: 1. Now, we do reaction 2, trial 1 so we can use Hessââ¬â¢s law to calculate the change in enthalpy of formation, but first we are going to calculate the uncertainty in this expression: First, we calculate the uncertainty for the: 1. 2. 3. Now for mass: 1. 2. As for the energy gained: 1. 2. Now for the energy of the reaction: 1. It is multiplied by an integer (-1) so it is the same unc. As for the moles: 1. 2. Finally, the change in enthalpy: 1. 2. 3. Reaction 2: First, we have to calculate the ÃâT by subtracting the final temperature by initial temperature: 1. 2. Now we calculate the mass of the solution, assuming it has the density as water: 1. 2. 3. Now, we can use q=mc ÃâT to calculate the energy gained by the solution: 1. 2. Therefore: 1. Now, we have to calculate the number of moles for MgO: 1. 2. We can now calculate the change in enthalpy by dividing the q of the reaction by the moles of the limiting reagent: 1. I will now calculate the uncertainties: First, we calculate the uncertainty for the: 1. 2. Now for mass: 1. 2. As for the energy gained: 1. 2. Now for the energy of the reaction: 1. It is multiplied by an integer (-1) so it is the same unc. As for the moles: 1. 2. Finally, the change in enthalpy: 1. 2. 3. Now to calculate the change of enthalpy, which will be the change of enthalpy of formation: 1. 2. Our final result is: 1. Mg (s) + 0.5 O2(g) MgO(s) Random error and percent error: We can calculate the random error by just adding the random errors of the component reactions: 1. 2. 3. As for the percent error: 1. 2. 3. Processed data: Trial 1 Trial 2 of reaction 1 -104 kJ/mol (à ± 2.10%) -99 kJ/mol (à ± 2.19%) of reaction 2 -463 kJ/mol (à ± 0.509%) -446 kJ/mol (à ± 0.525%) of MgO -645 kJ/mol (à ± 2.61%) -633 kJ/mol (à ± 2.72%) Conclusion and Evaluation: In this lab, we determined the standard enthalpy change of formation of MgO using Hessââ¬â¢s law. First, we reacted HCl with MgO for the first reaction and got -104 kJ/mol (à ± 2.10%) for trial 1 and -99 kJ/mol (à ± 2.19%) for trial 2. As for reaction 2, where you react, I got -463 kJ/mol (à ± 0.509%) for trial 1 and -446 kJ/mol (à ± 0.525%) for trial 2. When we use Hessââ¬â¢s Law, we have to reverse reaction 1 to get the targeted equation, Mg (s) + 0.5 O2(g) MgO(s), and we get an enthalpy change value of -645 kJ/mol (à ± 2.61%) for trial 1, and -633 kJ/mol (à ± 2.72%) for trial 2. For trial 1, my value got a percent error of 7.14%, which is not that bad considering the weaknesses this lab had that will be discussed in the evaluation. However, in trial 2, I got a better percent error, which is 5.15%, we got a better value because we had a bigger ÃâH values thus when adding them (since one of them is positive and the other two is negative) we get a smaller value for the enthalpy change of formation thus bringing us closer to the theoretical value. The biggest weakness in this lab was the impurity of the substances, the assumptions that we made about the HCl solution, for example, we assumed that the specific heat capacity of the solution is the same as water, which is an assumption that is not a 100% accurate and affected our ÃâH values for both reactions and eventually our final ÃâHf value. To fix this, In the different range of specific heat capacity values, 4.10 j/g k would have been more appropriate to get closer to our theoretical values, as you get a bigger qrxn values thus bigger ÃâH values. Another thing that I noticed is that the theoretical value that I got was the ââ¬Å"Standardâ⬠enthalpy change of formation. Standard meaning at standard conditions which are at 293 K and 101.3 kPa for pressure. These werenââ¬â¢t the conditions in the lab when I did the experiment. This might alter the experimental value closer to the theoretical value reducing the percent error.
Monday, January 20, 2020
Abraham Lincoln Essay -- essays research papers
Abraham Lincoln, from the backwoods of Hodgenville Kentucky, rose to become one of the greatest presidents of the United States. During his attempt to keep the Union in the Civil War, he gained more power and authority than any president before him. A excellent politician, Lincoln was always looked upon for leadership for he put reason and thoughtful decisions behind his word.Abraham Lincoln, born to Thomas Lincoln and Nancy Hawks on February 12, 1809, was conceived in a log cabin built by his father. Abe had one older sister, and a younger brother that died as an infant. The Lincoln family moved a lot, from Kentucky to Indiana, and back to Kentucky. Abe read a book titled Mason Locke Weems's Life and Memorable Actions of George Washington, this book mad a lasting impression on him that persuaded him throughout his life. By the time he was nineteen Abe reached his full grown height of six feet four inches. He held small jobs such as a clerk, postmaster and a few others through his early twenties. Then in 1832 he ran for county candidate against 13 others. Only four were to be elected and Lincoln finished eighth. In '834 he ran for a representative to the Illinois legislature, by this time Lincoln was well known and he got the election.Abe began to study law, and in 1836 became a licensed attorney. In 1837 he made his first public stand against slavery, Lincoln avoided extreme abolitionist groups though he was greatly against slavery.On November 4, 1842 Lincoln married Ma...
Sunday, January 12, 2020
Birago Diopââ¬â¢s Vanity Essay
Birago Diop: He was born in 1906 at Dakar, Senegal. He was educated in Senegal and in France where in qualifed in veterinary surgeon. VANITY is one of his many poems he used in expressing the presence of the ancestor. THE POEM VANITY If we tell, gently, gently All that we shall one day have to tell, Who then will hear our voices without laughter, Sad complaining voices of beggars Who indeed will hear them without laughter? If we roughly of our torments Ever increasing from the start of things What eyes will watch our large mouths Shaped by the laughter of big children What eyes will watch our large mouth? What hearts will listen to our clamoring? What ear to our pitiful anger Which grows in us like a tumor In the black depth of our plaintive throats? When our Dead comes with their Dead When they have spoken to us in their clumsy voices; Just as our ears were deaf To their cries, to their wild appeals Just as our ears were deaf They have left on the earth their cries, In the air, on the water, where they have traced their signs For us blind deaf and unworthy Sons Who see nothing of what they have made In the air, on the water, where they have traced their signs And since we did not understand the dead Since we have never listen to their cries If we weep, gently, gently If we cry roughly to our torments What heart will listen to our clamoring, What ear to our sobbing hearts?
Saturday, January 4, 2020
What Antimatter Is and Where to Find It
You may have heard about antimatter in the context of science fiction or particles accelerators, but antimatter is a part of the everyday world. Here is a look at what antimatter is and where you might find it. Every elementary particle has a corresponding anti-particle, which is antimatter. Protons have anti-protons. Neutrons have anti-neutrons. Electrons have anti-electrons, which are common enough to have their own name: positrons. Particles of antimatter have a charge opposite that of their usual components. For example, positrons have a 1 charge, while electrons have a -1 electric charge. Antimatter Atoms and Antimatter Elements Antimatter particles may be used to build antimatter atoms and antimatter elements. An atom of anti-helium would be comprised of a nucleus containing two anti-neutrons and two anti-protons (charge -2), surrounded by 2 positrons (charge 2). Anti-protons, anti-neutrons, and positrons have been produced in the lab, but antimatter exists in nature, too. Positrons are generated by lightning, among other phenomena. Lab-created positrons are used in Positron Emission Tomography (PET) medical scans. When antimatter and matter react the event is known as annihilation. A great deal of energy is released by the reaction, but no earth-ending dire consequence results, like you would see in science fiction. What Does Antimatter Look Like? When you see antimatter depicted in science fiction movies, its usually some weird glowing gas in a special containment unit. Real antimatter looks just like regular matter. Anti-water, for example, would still be H2O and would have the same properties of water when reacting with other antimatter. The difference is that antimatter reacts with regular matter, so you do not encounter large amounts of antimatter in the natural world. If you somehow had a bucket of anti-water and threw it into the regular ocean, it would produce an explosion much like that of a nuclear device. Real antimatter exists on a small scale in the world around us, reacts, and is gone.
Friday, December 27, 2019
Biography of John Sutter, Landowner During Gold Rush
John Sutter (born Johann August Suter; February 23, 1803ââ¬âJune 18, 1880) was a Swiss immigrant in California whose sawmill was the launching spot for the California Gold Rush. Sutter was a prosperous pioneer and land baron when one of his sawmill workers found a nugget of gold at the mill, on January 24, 1848. Despite the rush for gold and fortune that ensued on his land, Sutter himself was driven into poverty. Fast Facts: John Sutter Known For:à Sutter was a settler and founder of California and his mill was the launching spot for the California Gold Rush.Also Known As:à John Augustus Sutter, Johann August SuterBorn:à February 23, 1803 in Kandern, Baden, GermanyDied:à June 18, 1880 in Washington, D.C.Education: Possibly a Swiss military academySpouse: Annette DuboldChildren: 5Notable Quote: After having proved the metal with aqua fortis, which I found in my apothecary shop, likewise with other experiments, and read the long article ââ¬Å"goldâ⬠in the Encyclopedia Americana, I declared this to be gold of the finest quality, of at least 23 carats. Early Life Johann August Suter was a Swiss citizen born on February 23, 1803, in Kandern, Baden, Germany. He went to school in Switzerland and possibly served in the Swiss Army. He married Annette Dubold in 1826 and had five children. Leaving Switzerland In early 1834, with his shop failing in Burgdorf, Switzerland, Suter abandoned his family and set off for America. He arrived in New York City and changed his name to John Sutter. Sutter claimed a military background, saying he had been a captain in the Royal Swiss Guard of the French king. This claim has not been proven by historians, but as ââ¬Å"Captain John Sutter,â⬠he soon joined a caravan headed for Missouri. Traveling West In 1835, Sutter was moving farther westward, in a wagon train headed for Santa Fe, New Mexico. For the next few years, he engaged in several businesses, herding horses back to Missouri and then guiding travelers out to the West. Always close to being bankrupt, he heard about opportunity and land in remote regions of the West and joined an expedition to the Cascade Mountains. Sutters Peculiar Route to California Sutter loved the adventure of travel, which took him to Vancouver. He wanted to reach California, which would have been difficult to do overland, so he first sailed to Hawaii. He hoped to catch a ship in Honolulu bound for San Francisco. In Hawaii, his plans unraveled. There were no ships bound for San Francisco. But, trading on his purported military credentials, he was able to raise funds for a California expedition which, oddly, went by way of Alaska. In June 1839, he took a ship from a fur trading settlement at what is today Sitka, Alaska to San Francisco, finally arriving on July 1, 1839. Sutter Talked His Way Into Opportunity At that time, California was part of Mexican territory. Sutter approached Governor Juan Alvarado and impressed him enough to obtain a land grant. Sutter was given the opportunity to find a suitable location where he could begin a settlement. If the settlement was successful, Sutter could eventually apply for Mexican citizenship. Whatà Sutter had talked himself into was not a guaranteed success. The central valley of California at that time was inhabited by Native American tribes who were very hostile to white settlers. Other colonies in the area had already failed. Fort Sutter Sutter set out with a band of settlers in late 1839. Finding a favorable spot where the American and Sacramento Rivers came together, on the site of present-day Sacramento, Sutter began building a fort. Sutter dubbed the little colony Nueva Helvetia (or New Switzerland). Over the following decade, this settlement absorbed various trappers, immigrants, and wanderers who were also seeking fortune or adventure in California. Sutter Became a Casualty of Good Fortune Sutter built up a huge estate and by the mid-1840s, the former shopkeeper from Switzerland was known as ââ¬Å"General Sutter.â⬠He was involved in various political intrigues, including disputes with another power player in early California, John C.à Frà ©mont. Sutter emerged unscathed from these troubles and his fortune seemed assured. Yet the discovery of gold on his property by one of his workers on January 24, 1848, led to his downfall. Discovery of Gold Sutter attempted to keep the discovery of gold on his land secret. But when word leaked out,à the workers inà Sutters settlement deserted him to search for gold in the hills. Before long, word had spread worldwide of the gold discovery in California. Crowds of gold seekers came streaming intoà California and squatters encroached on Sutters lands, destroying his crops, herds, and settlements. By 1852, Sutterà was bankrupt. Death Sutter eventually returned East, living in a Moravian colony in Lititz, Pennsylvania. He traveled to Washington, D.C. to petition Congress for reimbursement for his losses. While his relief bill was bottled up in the Senate, Sutter died in a Washington hotel on June 18, 1880. Legacy The New York Times published a lengthy obituary of Sutter two days after his death. The newspaper noted that Sutter had risen from poverty to being the wealthiest man in the Pacific coast. And despite his eventual slide back into poverty, the obituary noted that he remained courtly and dignified. An article about Sutters burial in Pennsylvania noted thatà John C.à Frà ©montà was one of his pallbearers, and he spoke of their friendship back in California decades earlier. Sutter is known as one of the founders of California, whose Fort Sutter was the site of present-day Sacramento, California. His rise from poverty to wealth and his descent back to poverty is marked by a profound irony. The gold strike that created so many fortunes was a curse for the man on whose land it began and led to his ultimate ruin. Sources Discovery of Gold, by John A. Sutter - 1848.Hurtado, Albert, L. John Sutter: A Life on the North American Frontier,à University of Oklahoma Press, 2006.
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