Sunday, October 6, 2019
Module 1 and Journal Article Review 1 Essay Example | Topics and Well Written Essays - 1000 words
Module 1 and Journal Article Review 1 - Essay Example This change is just an effect of more complicated issues in the society. The changing family structures, the law, the economy, and the innate characteristics of different cultures all contribute to population imbalance between the young and the old. Traditional lifestyle is adapted by most Mexican families, but this did not spare them from the effects of a growing aging population. According to Weaver, ââ¬Å"societal aging may affect economic growth, sustainability of families, and communities to provide resources for older citizensâ⬠(ââ¬Å"Why Populationâ⬠2). The effect can be largely felt in the economic sector since the future of the workforce is at risk; wherein if there should be a continuous decline of birth rates and rapid increase of the aging population, the future economy would suffer as the nation would seek and import foreign workers. As the economy suffers from the lack of human resource, economy itself is also a major factor in this social shift. Due to th e increased price of basic commodities and other needs related to child rearing such as education, spouses prefer to use modern birth control methods in contrast to the ââ¬Å"God only knowsâ⬠family size (Weaver ââ¬Å"Aging in Mexicoâ⬠3). ... Furthermore, changing perspectives of intimate relationships also contribute much to this issue, which is more complicated than the economic side of the problem since this deals with the opinion and freewill of the people to chose whatever kind of relationship they want. Saying that the kind of relationship they have would develop negative side effects in the economy is against their freedom. The dilemma of having the people gain personal choice and at the same time protecting the national interest would require more studies on social preferences and a solution to fill in employment supply. Article 1 Kevin Kinsella and David Phillips in their article ââ¬Å"Global Aging: The Challenge of Success,â⬠identified what it means to have an economy with an aging population, with the corresponding reasons behind this and their effects on social shifts. Kinsella and Phillips contend that the aging population as a ââ¬Å"success storyâ⬠also has consequences especially on the economy . There are many factors in the declining birth rates of the population, but major contributors are fertility, sex ratios and the changes in societal perspectives especially to the family. According to Kinsella and Phillips, women nowadays are more adept to the rights concerning their reproductive health and thus, they already take part in deciding family planning. As working mothers continue to rise, the less likely for modern families to have more children. Sex ratio also complicates this problem. In Ukraine, there are only about 50 men per 100 women; more or less, other countries may have the same case. If the ratio would remain disproportionate, many challenges would compromise the
Saturday, October 5, 2019
The philosophers Thomas Hobbes and John Locke Assignment
The philosophers Thomas Hobbes and John Locke - Assignment Example As a result, formation of a government with total power is necessary for men to coexist peacefully. Such a government is formed by people who transfer their liberty for safety. People obey the laws formed by the government, which stands between them and their state of chaos, and they do not have the right to overthrow the government (Ladenburg, 2007). On the contrary, Locke believes that people are born free with rights to dispose their properties. According to Locke, people form a government to protect their possessions, and they can regain their liberty if the government breaches the law of society. However, following the events that happened in Libya, Lockeââ¬â¢s opinion is misguided. After Gaddafiââ¬â¢s fall in Libya, democracy has not yielded much. The country is controlled by armed militias, and the economy is deteriorating. Libyaââ¬â¢s state under Gaddafiââ¬â¢s ââ¬Ëauthoritarianââ¬â¢ rule was better than the current ââ¬Ëdemocraticââ¬â¢ rule. In conclusion, absolute democracy is unattainable in the presence of many people. Different people pursue different goals, which are likely to be conflicting, and this throws the society into a state of disorder. Human liberty needs to be controlled for a peaceful and progressive
Friday, October 4, 2019
Ethan Frome by Edith Wharton Essay Example for Free
Ethan Frome by Edith Wharton Essay Naturalism is commonly understood as an extension or intensification of realism. The intensification involves the introduction of characters of a kind (Baym, 1999) A perfect example of Naturalist work is Ethan Frome by Edith Wharton. Ethan, one of the main characters in the book, is a old, deformed man who is in love with his wifes cousin. Zeena is Ethans wife who occasionally has psychological illnesses. Mattie is Zeenas cousin and is in love with Ethan. There are many examples of naturalism in Ethan Frome: the characters, their deformities, and their lowly place in society, their bad luck, and distasteful environment they lived in. Ethan Frome, a significant character in the book, is very troubled. Life hasnt been pleasant for Ethan. Through his life experiences, Naturalism has been portrayed. At the beginning of the story, the reader, from the following quote, finds out that Ethan is crippled from a smash-up:The smash-up it wasââ¬âI gathered from the same informantââ¬âwhich, besides drawing the red gash across Ethans Fromes forehead, had so shortened and warped his right side that it cost him a visible effort to take the few steps from his buggy to the post-office window. (Wharton 4)This is a characteristic of Naturalism because the smash-up was caused by Ethans emotions. If Ethan did not have any feelings for Mattie, the smash-up would have never taken place and Ethan and Mattie would not be injured and forced to spend the rest of their lives being taken care of by Zeena. Then, the novel goes into a flashback and the whole story of Ethan Frome is told to the reader. The reader then finds out that Zeena, Ethans wife, is actually his cousin who came to Starkfield to take care of Ethans mother, and she never left after his mother passed away. Ethan and Zeena get married and they have a loveless marriage that took place because of loneliness. In the novel, it says that the marriage might not have taken place if it had not been wintertime. This is also another example of Naturalism because it was decision that was controlled by their instincts that if they did not get married, then they would have a lonely winter. Zeena becomes sick, and her cousin Mattie has to come to Starkfield and take care of the house. Ethan falls in love with Mattie, but is not able to express his feelings at first because of Zeena. Later on in the story, Ethan and Mattie discover that they love each other and that they cannot be together so they decided to commit suicide. Unfortunately, the suicide attempt was futile and Mattie and Ethan both survive. In this part of the story, Ethan and Mattie are acting on their emotions because they know that they cannot runaway together, and they also know that if they commit suicide they will never have to be apart together. Ethan and Mattie would have run away together if not for their economic conditions. Because the farm was so poor, Zeena wouldnt have sold the farm for very much and she would have to suffer if Ethan and Mattie had runaway together. Although, Ethan Frome plays a very big role in this novel, Zeena also portrays examples of naturalism. Zeenas character was portrayed to the reader as being selfish and needy. Because Zeena was not required to take care of anyone, she began to show the symptoms of sickness that Ethans mother was described to have had. And within a year of their marriage she developed the sickliness which had since made her notable even in a community rich I pathological instances. When she came to take care of his mother she had seemed to Ethan like the very genius of health, but he soon saw that he skill as a nurse had been acquired by the absorbed observation of her own symptoms.(Wharton 53)This is an example of Naturalism because Zeenas need to be required by others led her to become psychologically sick and this affected her marriage with Ethan. In the middle of the novel, Ethan and Mattie walk home together after the dance and Zeena hasnt put out the key. To the reader, this seems like it was Zeenas instinct to not put out a key because she was suspicious of the relationship between Mattie and Ethan. Soon after, Zeena goes to see a new doctor in town because of her sickness. This event gives the impression that Zeena is sick only because she wants to be recognized in society, and being sick is allowing her to be noticed by others. At the very end of the novel, Zeena recognizes that Mattie and Ethan have feelings for each other, and tries to split them apart by hiring another girl to take care of the house. However, the smash-up allowed Zeena to be needed by the handicapped Mattie and Ethan, and Zeena instant got better. These are examples of naturalism, because Zeena is acting on her instincts that that Ethan and Mattie are having an affair, and the outcome is that they try to commit suicide and fail and have to live the rest of their lives together with Zeena almost inà poverty. The decisions that the characters in Ethan Frome impact the rest of their lives. These decisions are all examples of Naturalism. Ethan decisions are based on his instinct and also his emotions of love for Mattie, and his emotion of loathe for Zeena. Zeenas, on the other hand, are based on by her instinct that Ethan and Mattie are in love with each other, her lowly status in society, and also their meager economic conditions. This book shows the reader that life should not always be controlled by instinct and emotion, but rather that it should be controlled by thoughts and adapting to the environment around you. Wharton, Edith. Simon Schuster, 2004.
Thursday, October 3, 2019
The field of nuclear physics
The field of nuclear physics Nuclear physics is the field of physics that studies the building blocks and interactions of atomic nuclei. The most commonly known applications of nuclear physics are nuclear power and nuclear weapons, but the research has provided wider applications, including those in medicine (nuclear medicine, magnetic resonance imaging), materials engineering (ion implantation) and archaeology (radiocarbon dating). The field of particle physics evolved out of nuclear physics and, for this reason, has been included under the same term in earlier times. The discovery of the electron by J. J. Thomson was the first indication that the atom had internal structure. At the turn of the 20th century the accepted model of the atom was J. J. Thomsons plum pudding model in which the atom was a large positively charged ball with small negatively charged electrons embedded inside of it. By the turn of the century physicists had also discovered three types of radiation coming from atoms, which they named alpha, beta, and gamma radiation. Experiments in 1911 by Lise Meitner and Otto Hahn, and by James Chadwick in 1914 discovered that the beta decay spectrum was continuous rather than discrete. That is, electrons were ejected from the atom with a range of energies, rather than the discrete amounts of energies that were observed in gamma and alpha decays. This was a problem for nuclear physics at the time, because it indicated that energy was not conserved in these decays. In 1905, Albert Einstein formulated the idea of mass?energy equivalence. While the work on radioactivity by Becquerel, Pierre and Marie Curie predates this, an explanation of the source of the energy of radioactivity would have to wait for the discovery that the nucleus itself was composed of smaller constituents, the nucleons. Rutherfords team discovers the nucleus In 1907 Ernest Rutherford published Radiation of the a Particle from Radium in passing through Matter[1]. Geiger expanded on this work in a communication to the Royal Society[2] with experiments he and Rutherford had done passing a particles through air, aluminum foil and gold leaf. More work was published in 1909 by Geiger and Marsden[3] and further greatly expanded work was published in 1910 by Geiger,[4] In 1911-2 Rutherford went before the Royal Society to explain the experiments and propound the new theory of the atomic nucleus as we now understand it. The key experiment behind this announcement happened in 1909 as Ernest Rutherfords team performed a remarkable experiment in which Hans Geiger and Ernest Marsden under his supervision fired alpha particles (helium nuclei) at a thin film of gold foil. The plum pudding model predicted that the alpha particles should come out of the foil with their trajectories being at most slightly bent. Rutherford had the idea to instruct his team to look for something that shocked him to actually observe: a few particles were scattered through large angles, even completely backwards, in some cases. He likened it to firing a bullet at tissue paper and having it bounce off. The discovery, beginning with Rutherfords analysis of the data in 1911, eventually led to the Rutherford model of the atom, in which the atom has a very small, very dense nucleus containing most of its mass, and consisting of heavy positively charged particles with embedded electrons in order to balance out the charge (since the ne utron was unknown). As an example, in this model (which is not the modern one) nitrogen-14 consisted of a nucleus with 14 protons and 7 electrons (21 total particles), and the nucleus was surrounded by 7 more orbiting electrons. The Rutherford model worked quite well until studies of nuclear spin were carried out by Franco Rasetti at the California Institute of Technology in 1929. By 1925 it was known that protons and electrons had a spin of 1/2, and in the Rutherford model of nitrogen-14, 20 of the total 21 nuclear particles should have paired up to cancel each others spin, and the final odd particle should have left the nucleus with a net spin of 1/2. Rasetti discovered, however, that nitrogen-14 has a spin of 1. James Chadwick discovers the neutron In 1932 Chadwick realized that radiation that had been observed by Walther Bothe, Herbert L. Becker, Ir?ne and Fr?d?ric Joliot-Curie was actually due to a neutral particle of about the same mass as the proton, that he called the neutron (following a suggestion about the need for such a particle, by Rutherford). In the same year Dmitri Ivanenko suggested that neutrons were in fact spin 1/2 particles and that the nucleus contained neutrons to explain the mass not due to protons, and that there were no electrons in the nucleus only protons and neutrons. The neutron spin immediately solved the problem of the spin of nitrogen-14, as the one unpaired proton and one unpaired neutron in this model, each contribute a spin of 1/2 in the same direction, for a final total spin of 1. With the discovery of the neutron, scientists at last could calculate what fraction of binding energy each nucleus had, from comparing the nuclear mass with that of the protons and neutrons which composed it. Differences between nuclear masses calculated in this way, and when nuclear reactions were measured, were found to agree with Einsteins calculation of the equivalence of mass and energy to high accuracy (within 1% as of in 1934). Yukawas meson postulated to bind nuclei In 1935 Hideki Yukawa proposed the first significant theory of the strong force to explain how the nucleus holds together. In the Yukawa interaction a virtual particle, later called a meson, mediated a force between all nucleons, including protons and neutrons. This force explained why nuclei did not disintegrate under the influence of proton repulsion, and it also gave an explanation of why the attractive strong force had a more limited range than the electromagnetic repulsion between protons. Later, the discovery of the pi meson showed it to have the properties of Yukawas particle. With Yukawas papers, the modern model of the atom was complete. The center of the atom contains a tight ball of neutrons and protons, which is held together by the strong nuclear force, unless it is too large. Unstable nuclei may undergo alpha decay, in which they emit an energetic helium nucleus, or beta decay, in which they eject an electron (or positron). After one of these decays the resultant nucleus may be left in an excited state, and in this case it decays to its ground state by emitting high energy photons (gamma decay). The study of the strong and weak nuclear forces (the latter explained by Enrico Fermi via Fermis interaction in 1934) led physicists to collide nuclei and electrons at ever higher energies. This research became the science of particle physics, the crown jewel of which is the standard model of particle physics which unifies the strong, weak, and electromagnetic forces. Modern nuclear physics Main articles: Liquid-drop model and Shell model A heavy nucleus can contain hundreds of nucleons which means that with some approximation it can be treated as a classical system, rather than a quantum-mechanical one. In the resulting liquid-drop model, the nucleus has an energy which arises partly from surface tension and partly from electrical repulsion of the protons. The liquid-drop model is able to reproduce many features of nuclei, including the general trend of binding energy with respect to mass number, as well as the phenomenon of nuclear fission. Superimposed on this classical picture, however, are quantum-mechanical effects, which can be described using the nuclear shell model, developed in large part by Maria Goeppert-Mayer. Nuclei with certain numbers of neutrons and protons (the magic numbers 2, 8, 20, 50, 82, 126, ) are particularly stable, because their shells are filled. Other more complicated models for the nucleus have also been proposed, such as the interacting boson model, in which pairs of neutrons and protons interact as bosons, analogously to Cooper pairs of electrons. Much of current research in nuclear physics relates to the study of nuclei under extreme conditions such as high spin and excitation energy. Nuclei may also have extreme shapes (similar to that of Rugby balls) or extreme neutron-to-proton ratios. Experimenters can create such nuclei using artificially induced fusion or nucleon transfer reactions, employing ion beams from an accelerator. Beams with even higher energies can be used to create nuclei at very high temperatures, and there are signs that these experiments have produced a phase transition from normal nuclear matter to a new state, the quark-gluon plasma, in which the quarks mingle with one another, rather than being segregated in triplets as they are in neutrons and protons. Modern topics in nuclear physics Spontaneous changes from one nuclide to another: nuclear decay Main article: Radioactivity There are 80 elements which have at least one stable isotope (defined as isotopes never observed to decay), and in total there are about 256 such stable isotopes. However, there are thousands more well-characterized isotopes which are unstable. These radioisotopes may be unstable and decay in all timescales ranging from fractions of a second to weeks, years, or many billions of years. For example, if a nucleus has too few or too many neutrons it may be unstable, and will decay after some period of time. For example, in a process called beta decay a nitrogen-16 atom (7 protons, 9 neutrons) is converted to an oxygen-16 atom (8 protons, 8 neutrons) within a few seconds of being created. In this decay a neutron in the nitrogen nucleus is turned into a proton and an electron and antineutrino, by the weak nuclear force. The element is transmuted to another element in the process, because while it previously had seven protons (which makes it nitrogen) it now has eight (which makes it oxygen). In alpha decay the radioactive element decays by emitting a helium nucleus (2 protons and 2 neutrons), giving another element, plus helium-4. In many cases this process continues through several steps of this kind, including other types of decays, until a stable element is formed. In gamma decay, a nucleus decays from an excited state into a lower state by emitting a gamma ray. It is then stable. The element is not changed in the process. Other more exotic decays are possible (see the main article). For example, in internal conversion decay, the energy from an excited nucleus may be used to eject one of the inner orbital electrons from the atom, in a process which produces high speed electrons, but is not beta decay, and (unlike beta decay) does not transmute one element to another. Nuclear fusion Main article: Nuclear fusion When two low mass nuclei come into very close contact with each other it is possible for the strong force to fuse the two together. It takes a great deal of energy to push the nuclei close enough together for the strong or nuclear forces to have an effect, so the process of nuclear fusion can only take place at very high temperatures or high densities. Once the nuclei are close enough together the strong force overcomes their electromagnetic repulsion and squishes them into a new nucleus. A very large amount of energy is released when light nuclei fuse together because the binding energy per nucleon increases with mass number up until nickel-62. Stars like our sun are powered by the fusion of four protons into a helium nucleus, two positrons, and two neutrinos. The uncontrolled fusion of hydrogen into helium is known as thermonuclear runaway. Research to find an economically viable method of using energy from a controlled fusion reaction is currently being undertaken by various resea rch establishments (see JET and ITER). For nuclei heavier than nickel-62 the binding energy per nucleon decreases with the mass number. It is therefore possible for energy to be released if a heavy nucleus breaks apart into two lighter ones. This splitting of atoms is known as nuclear fission. The process of alpha decay may be thought of as a special type of spontaneous nuclear fission. This process produces a highly asymmetrical fission because the four particles which make up the alpha particle are especially tightly bound to each other, making production of this nucleus in fission particularly likely. For certain of the heaviest nuclei which produce neutrons on fission, and which also easily absorb neutrons to initiate fission, a self-igniting type of neutron-initiated fission can be obtained, in a so-called chain reaction. (Chain reactions were known in chemistry before physics, and in fact many familiar processes like fires and chemical explosions are chemical chain reactions.) The fission or nuclear chain-reaction, using fission-produced neutrons, is the source of energy for nuclear power plants and fission type nuclear bombs such as the two that the United States used against Hiroshima and Nagasaki at the end of World War II. Heavy nuclei such as uranium and thorium may undergo spontaneous fission, but they are much more likely to undergo decay by alpha decay. For a neutron-initiated chain-reaction to occur, there must be a critical mass of the element present in a certain space under certain conditions (these conditions slow and conserve neutrons for the reactions). There is one known example of a natural nuclear fission reactor, which was active in two regions of Oklo, Gabon, Africa, over 1.5 billion years ago. Measurements of natural neutrino emission have demonstrated that around half of the heat emanating from the Earths core results from radioactive decay. However, it is not known if any of this results from fission chain-reactions. Production of heavy elements According to the theory, as the Universe cooled after the big bang it eventually became possible for particles as we know them to exist. The most common particles created in the big bang which are still easily observable to us today were protons (hydrogen) and electrons (in equal numbers). Some heavier elements were created as the protons collided with each other, but most of the heavy elements we see today were created inside of stars during a series of fusion stages, such as the proton-proton chain, the CNO cycle and the triple-alpha process. Progressively heavier elements are created during the evolution of a star. Since the binding energy per nucleon peaks around iron, energy is only released in fusion processes occurring below this point. Since the creation of heavier nuclei by fusion costs energy, nature resorts to the process of neutron capture. Neutrons (due to their lack of charge) are readily absorbed by a nucleus. The heavy elements are created by either a slow neutron cap ture process (the so-called s process) or by the rapid, or r process. The s process occurs in thermally pulsing stars (called AGB, or asymptotic giant branch stars) and takes hundreds to thousands of years to reach the heaviest elements of lead and bismuth. The r process is thought to occur in supernova explosions because the conditions of high temperature, high neutron flux and ejected matter are present. These stellar conditions make the successive neutron captures very fast, involving very neutron-rich species which then beta-decay to heavier elements, especially at the so-called waiting points that correspond to more stable nuclides with closed neutron shells (magic numbers). The r process duration is typically in the range of a few seconds.
Wednesday, October 2, 2019
alcohol treatment Essays -- essays research papers
Numerous treatment methods are constantly being discovered and developed to help start alcohol and drug abusers down the path of sobriety. There are many different methods available to help addicts who need help or to help addicts who want help. Our system is diverting from a punishing approach to a treatment approach. This paper will examine the most popular inpatient and outpatient options available throughout the nation. The types of addicts who normally file into these types of settings will be exam e, and The Way of Life. May I do your will alwaysâ⬠(Alcoholics). These prayers are recited by the addict and must be experienced as well as nurtured to successfully break your addiction and never go back once you have completed the twelve step program. Controlled drinking is the concept that individuals that have been drinking pathologically can be taught to drink in a controlled, nonpathological manner. Controlled drinking has mixed reviews, while some alcoholics that have taken this approach say it is very effective some say that if this method does infact then that person was not an alcoholic from the start. Abstinence from an abused substance should be the long term goal for the users in the eyes of many. Therapeutic communities were established in 1958 by Charles Dederick, the purpose of these communities is to live in a supportive, family atmosphere amongst other addicts. The addicts attend seminars that they are put in charge of by being assigned responsibilities need... alcohol treatment Essays -- essays research papers Numerous treatment methods are constantly being discovered and developed to help start alcohol and drug abusers down the path of sobriety. There are many different methods available to help addicts who need help or to help addicts who want help. Our system is diverting from a punishing approach to a treatment approach. This paper will examine the most popular inpatient and outpatient options available throughout the nation. The types of addicts who normally file into these types of settings will be exam e, and The Way of Life. May I do your will alwaysâ⬠(Alcoholics). These prayers are recited by the addict and must be experienced as well as nurtured to successfully break your addiction and never go back once you have completed the twelve step program. Controlled drinking is the concept that individuals that have been drinking pathologically can be taught to drink in a controlled, nonpathological manner. Controlled drinking has mixed reviews, while some alcoholics that have taken this approach say it is very effective some say that if this method does infact then that person was not an alcoholic from the start. Abstinence from an abused substance should be the long term goal for the users in the eyes of many. Therapeutic communities were established in 1958 by Charles Dederick, the purpose of these communities is to live in a supportive, family atmosphere amongst other addicts. The addicts attend seminars that they are put in charge of by being assigned responsibilities need...
Emotion and Memory of the Holocaust Essays -- Historical Knowledge of
In the aftermath of the Jewish Holocaust, an outpouring of eyewitness accounts by both survivors and perpetrators has surfaced as historical evidence. For many, this has determined what modern popular culture remembers about this atrocious event. Emotion obviously plays a vital role in the accounts of the survivors, yet can it be considered when discussing the historical significance of the murder of six million European Jews by the Third Reich? Emotion is the expression of thoughts and beliefs affected by feeling and sensibility of an individual regarding a certain event or individual. In terms of the Holocaust, emotion is overwhelmingly prevalent in the survivorsââ¬â¢ tales of their experiences, conveyed in terms of life, death, and survival. As scholars often point out, the Holocaust evokes strong sentiments, and transmits and reinforces basic societal values. Through in-depth observation of various forms of media sources, this paper will argue that emotion and the lack thereof, as a repercussion of the Holocaust, through the testimonies of those who survived its trials and tribulations, has played an enormous role in determining historical knowledge of the genocide. In analyzing the stories which survivors of the concentration camps and their perpetrators have put forth as historical evidence supporting the findings of scholars, one must pose the question: where does fact end and emotional distortion of the subject begin? It is critical to approach this question with great care, so as to note that not all historical accounts of the Holocaust by survivors and perpetrators are laden with emotional input and a multilayered interpretation of the event. In her acclaimed article ââ¬Å"Memory, Distortion, and History in the... ...e Museum.â⬠. History and Theory, Volume 36, Number 4, Theme Issue 36. December 1997 8. Greenspan, Henry. On Listening to Holocaust Survivors. Westport, Ct. Praeger Publishers. 1998. 9. Kramer, Stanley. Judgement at Nuremberg. 1961. 10. Levi, Primo. Survival in Auschwitz. New York, N.Y. Touchstone. 1996. 11. Lewy, Guenter. The Nazi Persecution of the Gypsies. Oxford, England. Oxford University Press. 2000. 12. Spielberg, Steven. Survivors of the Holocaust. 1996. 13. United States Holocaust Memorial Museum. http://www.ushmm.org/learn 14. Wiesel, Elie. Night. United States of America. Bantam Publishing Group. 1958. 15. Wyszogrod, Morris. A Brush with Death. Albany, N.Y. State University of New York Press. 1999. 16. Young, James. ââ¬Å"Toward a Received History of the Holocaust.â⬠History and Theory, Volume 36, Number 4, Theme Issue 36. December 1997.
Tuesday, October 1, 2019
Legitimating rationale Essay
Explain how and why the Functional Perspective is the legitimating rationale (explanation or justification) for a Capitalist economy, and give examples of this justification through race, religion, class, gender, and educational level. Then, critique the Functionalist ideology from the Conflict Perspective and describe how the stratification system produces deviants (not criminals, but rather those who fall outside the expectations in actions, thoughts, appearance, credit-score, etc) and the result of this labeling in terms of preserving the status quo. Without a judicial system, regardless how flawed it is, in a Capitalist economy it would be bedlam without it. As a human race, we need to abide by restrictions and laws. It is an unfortunate statistic that the majority of inmates are lower class, less educated than the norm. The penal system shows no favoritism on gender nor religion. In our society if the law is not obeyed, then you will have to pay the ultimate price. Earlier social conflict theorists argue that money is the mechanism which creates social disorder. The theory further states that society is created from ongoing social conflict between various groups. The gap between the haves, and have not, have certainly widened in the past five years. Families who were considered middle class five years ago have seen their credit score plummet. Ones that found themselves buying at higher retail stores are now at discounted houses. Having their homes foreclosed, and living week to week, has become the norm in the middle of this society. There is much resentment for the middle class as the higher class seems to go unscathed, and the lower class seems to be getting more and more government services. I believe the word status quo is a thing of the past. Part B Choose 1 legitimating rationale and show how the 5 basic social institutions (economy, family, religion, education and government) work together and support one another both structurally and ideologically to foster this rationale. Then discuss Marxââ¬â¢s claim that the interests and goals of the economic system defineà the goals and objectives of all other institutions. (50 pts) ââ¬Å"Women are subordinate to men,â⬠and the way that they all support it. Economy (women get paid less than men: glass ceiling), family (men expect women to play the housewife), religion (the bible talks about women as the ââ¬Å"sinnersâ⬠and that men are superior/women canââ¬â¢t be priests in the Catholic church), education (we are taught sexist rationales in school like boys are macho and girls play with Barbieââ¬â¢s and donââ¬â¢t fight), government (the U.à S. Constitution says ââ¬Å"all men are created equalâ⬠not all ââ¬Å"peopleâ⬠or ââ¬Å"all womenâ⬠)Beacuse the economy is controlled by a strong male presence (wall street, congress, etc) they continue to re-emphasize the male agenda because they want to keep control (keep higher salaries, make the laws, etc) So the male controlled economy defines the goals and objectives of everything so they stay in power.
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