Saturday, October 5, 2019
Bride of Frankenstein by James Whale Movie Review
Bride of Frankenstein by James Whale - Movie Review Example However, in spite of all these furious actions by the monster, several critics of the film find the monster to be a sympathetic figure and a reflective analysis of the character proves that the monster incorporates compassionate elements along with the apparent condemnable features. Bride of Frankenstein, unlike the original Frankenstein movie, depicts the story of the Shelley novel almost exactly and the monster in this film version has a compassionate appearance. "While in Frankenstein he was a murderous vengeful creature, the sequel presents a Monster the audience can sympathise with, thus bringing him much closer to Mary Shelley's original concept In one of them the Monster saves a girl from drowning and is 'rewarded' with being shot in the arm." (Bride of Frankenstein) There is a view that the monster does not deserve the kind of treatment it gets at the hands of the critics as there is nothing unnatural about the character.
Friday, October 4, 2019
Edit Essay Example | Topics and Well Written Essays - 250 words - 6
Edit - Essay Example The main challenge of managing more flourishing and a stable economy in Qatar is that most of the citizens living in this region are foreigners who usually come because of employment related businesses. It is important to note that Qatar has an overall population of about 1.8 million people, whereby 1.5 million of them are expatriates (QFINANCE, 2013). Therefore, the government has been forced to rely mainly on oil and gas in meeting its budget needs. In order for the Qatar government to maintain a healthy and a stable economy in the future, it ought to expand revenue sources, utilize its assets to hedge against instability and create a legacy for the future in by measures mentioned below. Firstly, the government needs to apply a tax on water and electricity as part of expanding its revenue sources. In this case all the households should pay a given fraction of tax to the state so that it can continue sustaining provision of the water and electricity to the people of Qatar. The revenue raised from the water and electricity will be useful in maintaining and expanding the countryââ¬â¢s national power grid in the future to cater for the growing demand for electricity from investors in the recent years (QFINANCE, 2013). Additionally, given Qatar is a desert country the taxes on water will be critical in digging more boreholes. This idea will in turn improve the national water supply with an end goal of handling the increasing demand for water used for domestic and commercial purposes. Secondly, the government needs to lease its land for 99 years whereby those who rent the land will be expected to pay a certain percentage of annual rates to the government. It is important to note that the government will be leasing land to expatriates who plans to use the land for various economic activities. Given that currently most of the land in Qatar is not leased to any expatriate, renting the
Thursday, October 3, 2019
Great Expectations Thesis Essay Example for Free
Great Expectations Thesis Essay All along, Pip was under the impression that his benefactor was Miss Havisham, as opposed to Magwitch. * Joe Gargery, Pips brother-in-law, and his first father figure. He is a blacksmith who is always kind to Pip and the only person with whom Pip is always honest. Joe was very disappointed when Pip decided to leave his home and travel to London to become a gentleman rather than be a blacksmith. * Mrs. Joe Gargery, Pips hot-tempered adult sister, who raises him after the death of their parents but complains constantly of the burden Pip is to her. Orlick, her husbands journeyman, attacks her and she is left disabled until her death. Mr Pumblechook, Joe Gargerys uncle, an officious bachelor and corn merchant. While holding Pip in disdain, he tells Mrs. Joe (as she is widely known) how noble she is to raise Pip. As the person who first connected Pip to Miss Havisham, he even claims to have been the original architect of Pips precious fortune. Pip despises Mr Pumblechook as Mr Pumblechook constantly makes himself out to be better than he really is. He is a cunning impostor. When Pip finally stands up to him, Mr Pumblechook turns those listening to the conversation against Pip and his usefulness at succession. Miss Havisham and her family * Miss Havisham, wealthy spinster who takes Pip on as a companion and who Pip suspects is his benefactor. Miss Havisham does not discourage this as it fits into her own spiteful plans which derive from her desire for revenge after being jilted at the altar several years before. She later apologizes to him as shes overtaken by guilt. He accepts her apology and she is badly burnt when her wedding dress, which she has never taken off since being jilted, catches fire when she gets close to the fireplace. Pip saves her, but she later dies from her injuries. Estella, Miss Havishams adopted daughter, whom Pip pursues romantically throughout the novel. She is secretly the daughter of Molly, Jaggerss housekeeper, and Abel Magwitch, Pips convict. Estella was given up for adoption to Miss Havisham after her mother, Molly, is tried for murder. [4] Estella represents the life of wealth and culture for which Pip strives. Since her ability to love has been ruined by Mis s Havisham, she is unable to return Pips passion. She warns Pip of this repeatedly, but he is unwilling or unable to believe her. * Matthew Pocket, a cousin of Miss Havishams. He is the patriarch of the Pocket family, but unlike others of her relatives he is not greedy for Havishams wealth. Matthew Pocket has a family of nine children, two nurses, a housekeeper, a cook, and a pretty but useless wife (named Belinda). He also tutors young gentlemen, such as Bentley Drummle, Startop, Pip, and his own son Herbert, who live on his estate. * Herbert Pocket, a member of the Pocket family, Miss Havishams presumed heirs, whom Pip first meets as a pale young gentleman who challenges Pip to a fist fight at Miss Havishams house when both are children. He is the son of Matthew Pocket, is Pips tutor in the gentlemanly arts, and shares his apartment with Pip in London, becoming Pips fast friend who is there to share Pips happiness. Characters from Pips youth * The Convict, an escapee from a prison ship, whom Pip treats kindly, and who turns out to be his benefactor, at which time his real name is revealed to be Abel Magwitch, but who is also known as Provis and Mr Campbell in parts of the story to protect his identity. Pip also covers him as his uncle in order that no one recognizes him as a convict sent to Australia years before. Abel Magwitch, the convicts given name, who is also Pips benefactor. * Provis, a name that Abel Magwitch uses when he returns to London, to conceal his identity. Pip also says that Provis is his uncle visiting from out of town. * Mr Campbell, a name that Abel Magwitch uses after he is discovered in London by his enemy. * Biddy, Wopsles second cousin; she runs an evening school from her home in Pips village and becomes Pips teacher. A kind and intelligent but poor young woman, she is, like Pip and Estella, an orphan. She is the opposite of Estella. Pip ignores her obvious love for him as he fruitlessly pursues Estella. After he realizes the error of his life choices, he returns to claim Biddy as his bride, only to find out she has married Joe Gargery. Biddy and Joe later have two children, one named after Pip whom Estella mistakes as Pips child in the original ending. Orlick was attracted to her, but his affection was unreciprocated. The lawyer and his circle * Mr Jaggers, prominent London lawyer who represents the interests of diverse clients, both criminal and civil. He represents Pips benefactor and is Miss Havishams lawyer as well. By the end of the story, his law practice is the common element that brushes many of the characters. * John Wemmick, Jaggerss clerk, only called Mr. Wemmick and Wemmick except by his father, who himself is referred to as The Aged Parent, The Aged P. , or simply The Aged. Wemmick is Pips chief go-between with Jaggers and generally looks after Pip in London. Mr. Wemmick lives with his father, The Aged, in Johnââ¬â¢s ââ¬Å"castleâ⬠, which is a small replica of a castle complete with a drawbridge and moat, in Walworth. * Molly, Mr Jaggerss maidservant whom Jaggers saved from the gallows for murder. Great Expectations is a novel depicting growth and personal development, in this case, of Pip. The themes are ambition and the desire for self-improvement (social, economic, educational, and moral); guilt, criminality, and innocence; maturation and the growth from childhood to adulthood; the importance of affection, loyalty, and sympathy over social advancement and class superiority; social class; the difficulty of maintaining superficial moral and social categories in a constantly changing worldFrom an early age, Pip feels guilt; he is also afraid that someone will find out about his crime and arrest him. The theme of crime comes in to even greater effect when Pip discovers that his benefactor is in fact a convict. Pip has an internal struggle with his conscience throughout the book. Great Expectations explores the different social classes of the Georgian era. Throughout the book, Pip becomes involved with a broad range of classes, from criminals like Magwitch to the extremely rich like Miss Havisham. Pip has great ambition, as demonstrated constantly in the book.
Levocetrizine Dihydrochloride and Ambroxol Hydrochloride
Levocetrizine Dihydrochloride and Ambroxol Hydrochloride SIMULTANEOUS ESTIMATION OF LEVOCETRIZINE DIHYDROCHLORIDE AND AMBROXOL HYDROCHLORIDE IN SYRUP DOSAGE FORM BY USING UV SPECTROPHOTOMETRIC METHOD S. S. Pekamwar, Madhav Shelke ABSTRACT: A simple, economical, rapid, accurate and precise UV Spectrophotometric method was developed for simultaneous estimation of Levocetrizine dihydrochloride and Ambroxol hydrochloride in bulk and in Syrup formulation. Determination of Levocetrizine dihydrochloride (LCTZ) and Ambroxol hydrochloride (AMB) in bulk and in syrup was conducted by using simultaneous equation method based on measurement of absorbance at 246 nm and 231 nm, à »max of LCTZ and AMB, respectively. The solvent used for proposed method was methanol: water (50:50). The linearity for LCTZ and AMB was in the range of 5-35 à µg/ml and 5-50 à µg/ml, respectively. The developed method was validated as per ICH guidelines. The % recovery was found to be in the range of 99.52- 99.82% and 100.37- 100.72% for LCTZ and AMB, respectively. Thus the proposed method was simple, rapid, reproducible and accurate and can be successfully applied for simultaneous estimation of Levocetrizine dihydrochloride and Ambroxol hydroc hloride in bulk and in Syrup formulation. KEYWORDS: Levocetrizine dihydrochloride, Ambroxol hydrochloride, Simultaneous Equation Method, UV Spectrophotometry, Syrup, Validation. INTRODUCTION: Levocetirizine is a third generation non-sedative antihistamine. Chemically, levocetirizine is the active enantiomer of cetirizine. It is the L-enantiomer of the cetirizine racemate. Levocetirizine works by blocking histamine receptors. Levocetrizine is chemically, (R)-2-[2-[4-[(4- chlorophenyl)phenylmethyl] piperazin-1-yl] ethoxy] acetic acid dihydrochloride. Chemical Structure of Levocetrizine dihydrochloride: Ambroxol is an active N-desmethyl metabolite of mucolytic bromhexine. Ambroxol is used as a bronchosecretolytic and expectorant drug. Ambroxol has been shown to increase the quantity and decrease the viscosity of respiratory tract secretions. It enhances pulmonary surfactant production (surfactant activator) and stimulates ciliary motility. These actions result in improved mucus flow and transport (mucociliary clearance). Enhancement of fluid secretion and mucociliary clearance facilitates expectoration and eases cough. Ambroxol is chemically, trans-4-[(2-Amino-3,5-dibromobenzyl)amino] cyclohexanol hydrochloride. Chemical Structure of Ambroxol hydrochloride: Literature survey revealed that various analytical methods involving UV Spectrophotometry, HPLC and HPTLC have been reported for LCTZ and AMB alone and in Combination with other drugs. However there is no method developed for simultaneous estimation of Levocetrizine dihydrochloride and Ambroxol hydrochloride in liquid dosage form (Syrup). The objective of present work was to develop simple, rapid, economical accurate and precise analytical method for simultaneous estimation of Levocetrizine dihydrochloride and Ambroxol hydrochloride in bulk and in liquid dosage form (Syrup). The developed method was validated in accordance with ICH guidelines and successfully employed for the assay of LCTZ and AMB in combined liquid dosage form (Syrup). MATERIALS AND METHODS Chemicals and Reagents: Analytically, pure LCTZ and AMB were provided as gift sample by Bidwai Chemicals Pvt. Ltd. Nanded and Glenmark Pharmaceuticals, Mumbai, Maharashtra, respectively. Syrup of LCTZ and AMB, Mzic D manufactured by Monad Pharmaceuticals, were purchased from local pharmacy. Methanol AR grade (Molychem) and Distilled water was used throughout the experimental work. Instruments: A UV-Visible Spectrophotometer: Shimadzu, Model: UV-1800 with 1 cm matched quartz cell and UV Probe 2.33 software was used. Calibrated analytical balance Anamed was used for weighing purpose. Digital Ultrasonic Cleaner (Sonicator): HMG India and Vaccum Pump Assembly: Millipore was used for the experimental work. Preparation Standard Stock Solution: Ambroxol hydrochloridre standard stock solution: Accurately weighed reference standard of AMB (10mg) was transferred to 100ml volumetric flask and dissolved in 50 ml solvent (Water, methanol 1:1) and sonicate for 5 min. then volumes was made up to the mark with same solvent; to obtain standard stock solution (100à µg/ml) of drug. For the preparation of working standards, suitable aliquots of stock solution were pipette out and volumes were made up to the mark with solvent (Water, methanol 1:1); so as to get required concentrations. Levocetrizine dihydrochloride standard stock solution: Accurately weighed reference standard of LCTZ (10mg) was transferred to 100ml volumetric flask and dissolved in 50 ml solvent (Water, methanol 1:1) and sonicated for 5 min. then volumes was made up to the mark with same solvent; to obtain standard stock solution (100à µg/ml) of drug. For the preparation of working standards, suitable aliquots of stock solution were pipette out and volumes were made up to the mark with solvent (Water, methanol 1:1); so as to get required concentrations. Selection of analytical wavelength: Sample solutions were scanned over the wavelength range of 200 nm to 400 nm, à »max for AMB and LCTZ were found at 231 nm and 246 nm. Representative absorption spectra of AMB and LCTZ are shown in fig. 1 2. Fig. 1 : Absorption Spectra of LCTZ Fig. 2 : Absorption spectra of AMB Preparation of calibration curve of AMB and LCTZ By appropriate dilution of standard stock solution, different dilutions were prepared ranging from 5à µg/ml to 35à µg/ml for LCTZ and 5 à µg/ml to 50 à µg/ml for AMB. Absorbance of all the dilutions was plotted against the respective concentrations to obtain the calibration curves. The absorption overlain spectrum of AMB and LCTZ is shown in fig. 3 Fig. 3 : Overlay Spectra of LCTZ AMB Fig. 4 : Calibration Curve of LCTZ Fig. 5 : Calibration Curve of AMB Analysis of Marketed Syrup Formulation: Ten syrup bottles were weighed accurately, average weight was determined and poured in calibrated measuring cylinder to check extractable volume. As per label claim syrup contain LCTZ 5mg/5ml and AMB 30mg/5ml, so 5ml syrup was pipette out in 100 ml volumetric flask and dissolved in water: methanol (1:1) solution, sonicated for 10 min and filtered. Then different concentrations of syrup sample were prepared by serial dilution method and used for analysis. Prepared syrup sample was analysed on UV spectrophotometer using Simultaneous Equation Method. Method Validation The method validation parameters linearity, precision, accuracy, repeatability, limit of detection and limit of quantitation were checked as per ICH guidelines. Precision: Precision of the method was verified by using syrup stock solution, the repeatability indicates the performance of the UV instrument. Interday and intraday precision was determined by repeating the assay three times in same day for intraday precision and on different day for interday precision studies. Accuracy (Recovery Study): To check the accuracy of proposed method, recovery studies were carried out at 80%, 100% and 120% of the test conc. As per ICH guidelines. To perform recovery study at 100%, 5ml syrup pipette out in volumetric flask and to this standard 30mg AMB and 5mg LCTZ was added. The volume as made up to the mark with water: methanol (1:1) solution and further dilution with same solvent to obtain sample solution Similarly, for 80% recovery study, 26mg AMB and 4mg LCTZ were added, and for 120% recovery study, 36mg AMB and 6mg LCTZ were added respectively. RESULTS AND DISCUSSION Precision Intraday Precision: Sr. No. Interval of Concentration (à µg/ml) % Recovery Time AMB LCTZ I 30.10 4.96 100.34 99.35 II Intra-day 29.95 4.95 99.84 99.28 III 30.20 4.97 100.68 99.54 Table 1 : Intra-day Precision data of marketed formulation Name of the drug Mean* SD %RSD AMB 100.28 0.4225 0.4213 LCTZ 99.40 0.1345 0.1353 * Indicates average of three determinations Table No. 2 : Statistical validation of intra-day precision data Inter-day Precision: Sr. No. Interval of Concentration (à µg/ml) % Recovery Time AMB LCTZ AMB LCTZ I 30.14 4.98 100.45 99.79 II Inter-day 30.09 4.98 100.32 99.72 III 29.96 4.98 99.87 99.63 Table 3 : Inter-day Precision Data Name of the drug Mean* SD %RSD AMB 100.21 0.3043 0.3036 LCTZ 99.71 0.0802 0.0804 * Indicates average of three determinations Table 4 : Statistical validation of inter-day precision data Accuracy (Recovery study): Level of Recovery Amount present (mg/5ml) Added concentration (mg) Amount recovered (mg) % Recovery AMB LCTZ AMB LCTZ AMB LCTZ AMB LCTZ 30 5 24 4 54.31 8.97 100.58 99.74 80% 30 5 24 4 54.20 8.95 100.38 99.52 30 5 24 4 54.38 8.98 100.72 99.82 30 5 30 5 60.28 9.96 100.47 99.68 100% 30 5 30 5 60.32 9.97 100.54 99.70 30 5 30 5 60.22 9.95 100.38 99.54 30 5 36 6 66.31 10.96 100.48 99.69 120% 30 5 36 6 66.36 10.96 100.56 99.72 30 5 36 6 66.24 10.95 100.37 99.58 Table 5 : Recovery study data Level of recovery % Mean recovery S.D. % R.S.D. AMB LCTZ AMB LCTZ AMB LCTZ 80% 100.56 99.70 0.1708 0.1553 0.1698 0.1557 100% 100.46 99.64 0.0802 0.0871 0.0798 0.0874 120% 100.47 99.67 0.0953 0.0737 0.0948 0.0951 Table 6 : Statistical validation of recovery study data Limit of Detection and Limit of Quantitation: Name of the drug LOD à µg/ml LOQ à µg/ml AMB 3.1645 9.5896 LCTZ 3.0891 9.3611 Table 7 : LOD LOQ CONCLUSION: The method used is simple and rapid and does not involve the use of complex instrument, low value of Standard deviation showed that the method is precise and high percentage of recovery of as shown in table shows that the method is accurate. Thus from the results it can be concluded that above developed UV method is suitable for estimation of AMB and LCTZ in syrup formulation. The estimated method is sensitive, precise, accurate, specific and economic. Hence, the method can be used successfully for quality control and routine analysis of finished pharmaceutical dosage form. REFERENCES: Indian Pharmacopoeia 2007, The Indian Pharmacopoeia Commission, Government of India, Ministry of Health Family Welfare, Ghaziabad, Volume 2, 83 , 672. Makarand Avhad, Dr. C.G. Bonde, development and validation of simultaneous uvspectrophotometric Method for the determination of levofloxacin and ambroxol in tablets, International Journal of ChemTech Research, 2009, 1, 4, 873-888 P.A. Patel, M.N. Dole, P.S. Shedpure, S.D. Sawant, Spectrophotometric Simultaneous Estimation of Salbutamol And Ambroxol In Bulk And Formulation, Asian Journal of Pharmaceutical and Clinical Research, 4, 2011, 42-45 Ilangovan Ponnilavarasan, Chebrolu.Sunil Narendra Kumar, and P.Asha, Simultaneous Estimation of Ambroxol Hydrochloride and Loratadine in Tablet Dosage form by Using Uv Spectrophotometric Method, 2.2011, 338-345 Jawed Akhtar, Monica Padaria, Development Validation of UV Spectrophotometric Methods for Simultaneous Determination of Doxofylline Ambroxol Hydrochloride in Bulk their Combined Dosage Form, Indo Global Jr. of Ph. Sciences, 2013, 3(1), 90-95 Ritu Kimbahune, Sunil K, Prachi Kabra, Kuldeep Delvadiya, Sanjay Surani, Spectrophotometric Simultaneous Analysis of Ambroxol Hydrochloride, Guaifenesin and Terbutaline Sulphate In Liquid Dosage Form (Syrup), International Journal of Pharmaceutical Sciences Review And Research, 8, 2, 2011, 24-28 Jyostna S.Patil, Chandan R. Rane, Radhika D.Ingale, Simultaneous Spectrophotometric Methods for Estimation of Levocetirizine and Ambroxol in Pharmaceuticalv Dosage Form, Journal of Chemical, Biological and Physical Sciences, 2013, 3, 2, 1115-1122 S Lakshmana Prabu, AA Shirwaikar, Annie Shirwaikar, C Dinesh Kumar, G Aravind Kumar, Simultaneous UV spectrophotometric estimation of ambroxol hydrochloride and levocetirizine dihydrochloride, Indian J Pharm Sci, 70(2), 2008, 236ââ¬â238. Kishore Konam, Pottabathula Hari Prasad, Punuri Samuel Lukaraju, Sirajudeen. M.A, Determination of montelukast sodium and levocetrizine hydrochloride by using HPTLC method, Elixir International Journal, 38, 2011, 4276-4278 Madhura V Dhoka, Shakuntala S. Chopade, Method Development Comparative Statistical Evaluation of HPLC HPTLC Method for Simultaneous Estimation of Cefodrixil Monohydrate Ambroxol Hydrochloride, Indo Global Journal of Pharmaceutical Sciences, 2(2), 2012, 203-212 Prince Francis Moses, Prathap Singh, Alagar Raja, David Banji , Analytical Method Development and Validation for Simultaneous Estimation of Ambroxol and Desloratadine in its Pharmaceutical Dosage Form By Rp-Hplc, World Journal Of Pharmacy And Pharmaceutical Sciences, 2(6), 2013, 6246-6262 Rathore AS, Sathiyanarayanan L, Mahadik KR, Development of Validated HPLC and HPTLC Methods for Simultaneous Determination of Levocetirizine Dihydrochloride and Montelukast Sodium in Bulk Drug and Pharmaceutical Dosage Form, Pharm Anal Acta, 1(1), 2010, 1-6
Wednesday, October 2, 2019
Exxon Oil Spill Essay -- essays research papers
Oil spills have often occurred too many times in this world. Unfortunately, when this does happen, there is always losses of life. Many people are affected by it. There is always a price to pay. On March 24, 1989 the Exxon Valdez oil tanker spilt all its oil into the ocean. à à à à à Going about twelve miles per hour, the doubt of a oil spill was highly unlikely. But, when the oil tanker hit Bligh Reef in Alaskaââ¬â¢s Prince William Sound, the worst oil spill in United States history occurred. Consequently, more than eleven million gallons of oil spued into the ocean. In addition, more than thirteen hundred miles of shoreline was coated with oil. Furthermore, the slick would have covered more than three football fields in width. It was the fifty-third ranked spill in the world and the worst the United States has ever seen. Many places would be contaminated by the oil. à à à à à Not only did the oil spill into the ocean, it also got on shore. More than one thousand miles of shore line was hit by the oil. It hurt the small towns along Alaska, Canada, and even parts of Russia that depend on fishing and the sea life. Many species were affected by it. à à à à à The disaster destroyed many sea creatures. More than 250,000 birds were wiped out. Over 2,800 sea otters were killed. Analysis showed that there are two recovered species. These species are the bald eagle and the river otter. Also, there are eight recovering species. These are the black oystercatcher, common murre, marbled murrelet, mussel, Pacific herring, pink salmon, sea otter, sockeye salmon, and intertidal and subtidal flora and fauna. Unfortunate, there are six unrecovered species. Common loon, cormorant, harbor seal, harlequin duck, pigeon guillemot, and others are among these. In addition, there are four species of unknown recovery. They include the cutthroat trout, dolly varden, kittlitzââ¬â¢s murrelet, and rockfish. Not only were the fish affected, but also the humans. à à à à à Thousands of fisherman were hurt by the spill. In fact, more than 10,000 fisherman that work the waters of Prince William Sound, Cook Inlet, and Kodiak Island received money from Exxon. Exxon estimated that the losses to commercial fisheries amounted to $113 million. Exxon paid the fisherman $286.8 million in compensatory damages. Because of the s... ...more than $2.1 billion in cleanup costs in the first two years after the disaster. Surprisingly, only about fourteen percent of the oil was recovered by cleanup crews. Cleaning and natural degradation removed much of the oil from the beaches, but visually identifiable surface and subsurface oil persists at many locations. Of the approximate 1,300 miles of shorelines, 200 miles of it was considered heavy or medium oiling. The rest of the shorelines were considered light or very light oiling. So what happened to the 10.8 million gallons of oil released into the environment? Based on surveys, most of the oil either evaporated, dispersed into the water column, or degraded naturally. Cleanup crews just got fourteen percent of it while thirteen percent of it sunk to the sea floor. About two percent remains on the beaches. à à à à à March 24, 1989 is a date no one will forget. As the worst oil spill ever to hit America, many sea creatures lost their life and humans lost their source of work and food. A lesson can be learned from the tragedy of the Exxon Valdez. It is too bad it was learned with the expense of thousands of sea creatures. à à à à Ã
Tuesday, October 1, 2019
Critique and Revolution: The Faces of Karl Marx :: Essays Papers
Critique and Revolution: The Faces of Karl Marx ââ¬Å"The nobility of man shines upon us from their work hardened bodies.â⬠(Manuscripts, 100)[1]. And according to Karl Marx, that is the bottom line. In Economic and Philosophic Manuscripts of 1844 and Manifesto of the Communist Party[2], two of his most profound works, Marx outlines both his harsh critique of capitalism and his prophetic theory of impending communist revolution. Although these texts are extremely complexââ¬âManuscripts is described often as the hardest sixty pages of modern philosophyââ¬âtheir main points can be summed up concisely. For Marx, a workerââ¬â¢s labor, and therefore product, is an extension of himself, and any practice that separates the two, most obviously capitalismââ¬â¢s private property, essentially tears the man apart. A system such as this is beyond repair, and the only feasible solution is a forceful and complete communist revolution ending in the destruction of private property and the reunion of mankind with his labor. The complex philosophizing behind these two doctrines will be revealed shortly, but now the question arises, are they consistent? More specifically, do the circumstances that exist under capitalism, as described in his critique, put the world in a realistic position to undergo his desired revolution? Taking his opinions of the world under capitalism as fact, the answer is yes: the desperation of alienation will drive the growing majority of men to unite and revolt. That said, a thorough examination of both his critique of capitalism and his planned communist revolution are necessary. Marx begins his discussion of life under capitalism by defining the term ââ¬Å"estranged labor.â⬠In essence, estranged labor is a separation between a worker and his product. This can come as a result of a division of labor, the institution of machines in factories, or the rise in importance of money, among other things, but the result is the same: the worker loses control of his product. Estranged labor does not seem inherently flawed until the observation is made that the more a worker produces and the more valuable his product becomes, the poorer he becomes. For Marx, this leads to the worker himself becoming a commodity that, like his product, he does not own. Instead of a worker owning his labor with his labor having inherent value, the labor is jailed inside the products, and outside of the worker. Critique and Revolution: The Faces of Karl Marx :: Essays Papers Critique and Revolution: The Faces of Karl Marx ââ¬Å"The nobility of man shines upon us from their work hardened bodies.â⬠(Manuscripts, 100)[1]. And according to Karl Marx, that is the bottom line. In Economic and Philosophic Manuscripts of 1844 and Manifesto of the Communist Party[2], two of his most profound works, Marx outlines both his harsh critique of capitalism and his prophetic theory of impending communist revolution. Although these texts are extremely complexââ¬âManuscripts is described often as the hardest sixty pages of modern philosophyââ¬âtheir main points can be summed up concisely. For Marx, a workerââ¬â¢s labor, and therefore product, is an extension of himself, and any practice that separates the two, most obviously capitalismââ¬â¢s private property, essentially tears the man apart. A system such as this is beyond repair, and the only feasible solution is a forceful and complete communist revolution ending in the destruction of private property and the reunion of mankind with his labor. The complex philosophizing behind these two doctrines will be revealed shortly, but now the question arises, are they consistent? More specifically, do the circumstances that exist under capitalism, as described in his critique, put the world in a realistic position to undergo his desired revolution? Taking his opinions of the world under capitalism as fact, the answer is yes: the desperation of alienation will drive the growing majority of men to unite and revolt. That said, a thorough examination of both his critique of capitalism and his planned communist revolution are necessary. Marx begins his discussion of life under capitalism by defining the term ââ¬Å"estranged labor.â⬠In essence, estranged labor is a separation between a worker and his product. This can come as a result of a division of labor, the institution of machines in factories, or the rise in importance of money, among other things, but the result is the same: the worker loses control of his product. Estranged labor does not seem inherently flawed until the observation is made that the more a worker produces and the more valuable his product becomes, the poorer he becomes. For Marx, this leads to the worker himself becoming a commodity that, like his product, he does not own. Instead of a worker owning his labor with his labor having inherent value, the labor is jailed inside the products, and outside of the worker.
Educational Reform in the Philippines
The Giant planets Lesson 8. 8 Introduction: Gas giants fall into different categories. So-called ââ¬Å"traditionalâ⬠gas giants include Jupiter. Jupiter is such a classic example of a gas giant that gas giants are often referred to as Jovian planets despite the fact that some gas giants ,ice giants for instance are very different from Jupiter. Traditional gas giants have high levels of hydrogen and helium. Another category of gas giants is ice giants. Ice giants are also composed of small amounts of hydrogen and helium; however, they have high levels of what are called ââ¬Å"ices. These ices include methane, water, and ammonia. I. Objectives: A. Identify the different kinds of giants planet B. Explain the structure of the giants planets II. Learning Content: There are four gas giants in our Solar System: Jupiter, Saturn, Uranus, and Neptune. As noted, Jupiter is a traditional gas giant. Saturn is also a traditional gas giant. However, Uranus and Neptune are ice giants. Their b lue color is due to the large amounts of methane in the planets. All of the gas giants in our Solar System have planetary ring system, and they are all much larger than the terrestrial planets in the Solar System. All of the gas giants in our Solar System also have many moons. Again, Jupiter holds the record with 63à moons discovered so far. Outer Planets For the outer planets, the division is more distinct, with the inner two gas giants, Jupiter and Saturn being quite different in many ways from the outer two gas giants, Uranus and Neptune. In terms of size, Saturn, with a diameter of 120,000km is not a world away from Jupiter, with a 142,000km diameter. However the other two planets, Uranus and Neptune have diameters of ââ¬Ëonly' 51,800km and 50,000km respectively ââ¬â roughly the size of the core of Saturn or Jupiter. This large size difference is responsible for many other differences between the two groups, for instance Jupiter and Saturn both have sufficiently high internal pressures to ââ¬Ësqueeze' large quantities of Hydrogen into a metallic state in their cores, whilst Uranus and Neptune can produce only a tiny fraction of this amount. As a consequence, their magnetic fields are much smaller than those of Saturn and Jupiter, whose magnetic fields are generated in large part thanks to electrical currents moving through this material. JUPITER| SATURN| URANUS| Diameter| 142,600 km| Average Distance from Sun| 778,412,010 km| Mass| 1. 90 x 1027 kg| Size compared to Earth| 11x| Gravity compared to Earth| 2. 34x| Surface Temperature| 165 K| Length of day| 9 hours 50 minutes| Length of year| 11. 84 years| Eccentricity of Orbit| 0. 048| Density| 1. 33 gm/cm3| Moons| 63| Atmosphere| Hydrogen ââ¬â 90% Helium ââ¬â 10% Traces of Methane & Ammonia| | Diameter| 120,200 km| Average Distance from Sun| 1,427 million km| Mass| 5. 68 x 1026 kg| Size Compared to Earth (Diameter)| 9x| Gravity compared to Earth| 0. 93x| Cloud-Top Temperature| -180à °C| Length of Day| 10 hours 14 mins| Length of Year| 29. 46 Earth years| Eccentricity of Orbit| 0. 056| Moons| 30+| Density| 0. 70gm/cm3| Atmosphere| Hydrogen ââ¬â 94% Helium ââ¬â 6% Traces of Methane, Ammonia & Water Vapour| | Diameter| 51,800 km| Average Distance from Sun| 2,871 million km 19. 2AU| Mass| 8. 68 x 1025 kg| Size compared to Earth (Diameter)| 4x| Gravity compared to Earth| 0. 79x| Surface temperature| -210à °C| Length of Day| 17 hours 14 mins(Retrograde)| Length of Year| 84. 01 Earth years| Eccentricity of Orbit| 0. 046| Moons| 21| Density| 1. 30gm/cm3| Atmosphere| Hydrogen ââ¬â 85% Helium ââ¬â 13% Methane ââ¬â 2%| | Diameter| 49,528 km| Average Distance from Sun| 4,501 million km| Mass| 1. 02 x 1026kg| Size compared to Earth| 3. 8x| Gravity compared to Earth| 1. 2x| Cloud-Top Temperature| -220à °C| Length of Day| 16. 11 hours| Length of Year| 164. 8 Earth years| Eccentricity of Orbit| 0. 009| Moons| 8| Density| 1. 76 gm/cm3| Atmosphere| Hydrogen ââ¬â 85% Helium ââ¬â 13% Methane ââ¬â 2%| Test yourself A. Write the word/s describe in each number. ______________1. Planets had 63 moons ______________2. It is a large planet in a solar system _____________ 3. Planets had eight moons ______________4. Roman God of Agriculture ______________5. A Dwarf among Giants planet B. Write true if the statement is correct and if it is false write the correct word above the underlined concept. _______________1. Jovian planet refers to the Roman god Jupiter _______________2. Jupiter, Saturn, Uranus, and Neptune are often called ââ¬Å"Gas Giants _______________3. Giant planets had a coldness atmosphere _______________4. Uranus has an extreme tilt that causes its seasons to be severely marked. _______________5. Hot Jupiter also called roaster planets. Written report In Astronomy Submitted by: Marilyn G. Habla Rodel Hererra BEED CC3A
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