Wednesday, March 4, 2020
Chemistry Nobel Prize Winners (1901 to Present)
Chemistry Nobel Prize Winners (1901 to Present) Alfred Nobel was a Swedish chemist and the inventor of dynamite. Nobel recognized the destructive power of dynamite, but hoped that such power would lead to an end to warfare. However, dynamite was quickly exploited to develop newer, more deadly weapons. Not wanting to be remembered as the merchant of death, an epitaph given him by a French newspaper in a mistaken obituary, Nobel wrote his will such that it would establish prizes in physics, chemistry, physiology or medicine, literature, and peace to those who, during the preceding year, shall have conferred the greatest benefit on mankind. A sixth category, economics, was added in 1969. It took some time to implement Nobels wishes. The first Nobel prize was awarded in 1901, which was five years after Alfred Nobels death. Note that the Nobel prize can only be won by individuals, there can be no more than three winners in a given year, and money is split equally between multiple winners. Each winner gets a gold medal, a sum of money, and a diploma. Here is the list of the Nobel laureates in Chemistry: Nobel Prize in Chemistry Year Laureate Country Research 1901 Jacobus H. vant Hoff Netherlands Discovered laws of chemical dynamics and osmotic pressure in solutions 1902 Emil Hermann Fischer Germany Synthetic studies of sugar and purine groups 1903 Svante A. Arrhenius Sweden Theory of electrolytic dissociation 1904 Sir William Ramsay Great Britain Discovered the noble gases 1905 Adolf von Baeyer Germany Organic dyes and hydroaromatic compounds 1906 Henri Moissan France Studied and isolated the element fluorine 1907 Eduard Buchner Germany Biochemical studies, discovered fermentation without cells 1908 Sir Ernest Rutherford Great Britain Decay of the elements, chemistry of radioactive substances 1909 Wilhelm Ostwald Germany Catalysis, chemical equilibria, and reaction rates 1910 Otto Wallach Germany Alicyclic compounds 1911 Marie Curie Poland-France Discovered radium and polonium 1912 Victor GrignardPaul Sabatier FranceFrance Grignards reagentHydrogenation of organic compounds in the presence of finely divided metals 1913 Alfred Werner Switzerland Bonding relations of atoms in molecules (inorganic chemistry) 1914 Theodore W. Richards United States Determined atomic weights 1915 Richard M. Willsttter Germany Investigated plant pigments, particularly chlorophyll 1916 The prize money was allocated to the Special Fund of this prize section 1917 The prize money was allocated to the Special Fund of this prize section 1918 Fritz Haber Germany Synthesized ammonia from its elements 1919 The prize money was allocated to the Special Fund of this prize section 1920 Walther H. Nernst Germany Studies on thermodynamics 1921 Frederick Soddy Great Britain Chemistry of radioactive substances, occurrence and nature of the isotopes 1922 Francis William Aston Great Britain Discovered several isotopes, mass spectrograph 1923 Fritz Pregl Austria Microanalysis of organic compounds 1924 The prize money was allocated to the Special Fund of this prize section 1925 Richard A. Zsigmondy Germany, Austria Colloid chemistry (ultramicroscope) 1926 Theodor Svedberg Sweden Disperse systems (ultracentrifuge) 1927 Heinrich O. Wieland Germany Constitution of bile acids 1928 Adolf Otto Reinhold Windaus Germany Study of sterols and their relation with vitamins (vitamin D) 1929 Sir Arthur HardenHans von Euler-Chelpin Great BritainSweden, Germany Studied fermentation of sugars and enzymes 1930 Hans Fischer Germany Studied blood and plant pigments, synthesized hemin 1931 Friedrich BergiusKarl Bosch GermanyGermany Developed chemical high-pressure processes 1932 Irving Langmuir United States Surface chemistry 1933 The prize money was with 1/3 allocated to the Main Fund and with 2/3 to the Special Fund of this prize section. 1934 Harold Clayton Urey United States Discovery of heavy hydrogen (deuterium) 1935 Frederic Joliot-CurieIrne Joliot-Curie FranceFrance Syntheses of new radioactive elements (artificial radioactivity) 1936 Peter J. W. Debye Netherlands, Germany Studied dipole moments and the diffraction of X rays and electron beams by gases 1937 Walter N. HaworthPaul Karrer Great BritainSwitzerland Studied carbohydrates and vitamin CStudied carotenoids and flavins and vitamins A and B2 1938 Richard Kuhn Germany Studied carotenoids and vitamins 1939 Adolf F. J. ButenandtLavoslav Stjepan Ruika GermanySwitzerland Studies on sexual hormonesStudied polymethylenes and higher terpenes 1940 The prize money was with 1/3 allocated to the Main Fund and with 2/3 to the Special Fund of this prize section 1941 The prize money was with 1/3 allocated to the Main Fund and with 2/3 to the Special Fund of this prize section. 1942 The prize money was with 1/3 allocated to the Main Fund and with 2/3 to the Special Fund of this prize section. 1943 Georg de Hevesy Hungary Application of isotopes as indicators in the investigation of chemical processes 1944 Otto Hahn Germany Discovered nuclear fission of atoms 1945 Artturi Ilmari Virtanen Finland Discoveries in the area of agricultural and food chemistry, method of preservation of fodder 1946 James B. Sumner John H. Northrop Wendell M. Stanley United StatesUnited StatesUnited States Prepared enzymes and virus proteins in pure formCrystallizability of enzymes 1947 Sir Robert Robinson Great Britain Studied alkaloids 1948 Arne W. K. Tiselius Sweden Analysis using electrophoresis and adsorption, discoveries concerning serum proteins 1949 William F. Giauque United States Contributions to chemical thermodynamics, properties at extremely low temperatures (adiabatic demagnetization) 1950 Kurt AlderOtto P. H. Diels GermanyGermany Developed diene synthesis 1951 Edwin M. McMillanGlenn T. Seaborg United StatesUnited States Discoveries in the chemistry of transuranium elements 1952 Archer J. P. MartinRichard L. M. Synge Great BritainGreat Britain Invented distribution chromatography 1953 Hermann Staudinger Germany Discoveries in the area of macromolecular chemistry 1954 Linus C. Pauling United States Studied the nature of the chemical bond (molecular structure of proteins) 1955 Vincent du Vigneaud United States Synthesized a polypeptide hormone 1956 Sir Cyril Norman HinshelwoodNikolai N. Semenov Great BritainSoviet Union Mechanisms of chemical reactions 1957 Sir Alexander R. Todd Great Britain Studied nucleotides and their coenzymes 1958 Frederick Sanger Great Britain Structure of proteins, especially insulin 1959 Jaroslav Heyrovsk Czech Republic Polarography 1960 Willard F. Libby United States Application of carbon 14 for age determinations (radiocarbon dating) 1961 Melvin Calvin United States Studied the assimilation of carbonic acid by plants (photosynthesis) 1962 John C. KendrewMax F. Perutz Great BritainGreat Britain, Austria Studied the structures of globulin proteins 1963 Giulio NattaKarl Ziegler ItalyGermany Chemistry and technology of high polymers 1964 Dorothy Mary Crowfoot Hodgkin Great Britain Structure determination of biologically important substances by means of X rays 1965 Robert B. Woodward United States Syntheses of natural products 1966 Robert S. Mulliken United States Studied chemical bonds and the electron structure of molecules using the orbital method 1967 Manfred EigenRonald G. W. NorrishGeorge Porter GermanyGreat BritainGreat Britain Investigated extremely fast chemical reactions 1968 Lars Onsager United States, Norway Studied the thermodynamics of irreversible processes 1969 Derek H. R. BartonOdd Hassel Great BritainNorway Development of the concept of conformation 1970 Luis F. Leloir Argentina Discovery of sugar nucleotides and their role in the biosynthesis of carbohydrates 1971 Gerhard Herzberg Canada Electron structure and geometry of molecules, particularly of free radicals (molecular spectroscopy) 1972 Christian B. AnfinsenStanford MooreWilliam H. Stein United StatesUnited StatesUnited States Studied ribonuclease (Anfinsen)Studied the active center of ribonuclease (Moore Stein) 1973 Ernst Otto FischerGeoffrey Wilkinson GermanyGreat Britain Chemistry of metal-organic sandwich compounds 1974 Paul J. Flory United States Physical chemistry of macromolecules 1975 John CornforthVladimir Prelog Australia - Great BritainYugoslavia - Switzerland Stereochemistry of enzyme catalysis reactionsStudied the stereochemistry of organic molecules and reactions 1976 William N. Lipscomb United States Structure of boranes 1977 Ilya Prigogine Belgium Contributions to the thermodynamics of irreversible processes, particularly to the theory of dissipative structures 1978 Peter Mitchell Great Britain Studied biological energy transfer, development of the chemiosmotic theory 1979 Herbert C. BrownGeorg Wittig United StatesGermany Development of (organic) boron and phosphorous compounds 1980 Paul BergWalter GilbertFrederick Sanger United StatesUnited StatesGreat Britain Studied the biochemistry of nucleic acids, particularly hybrid DNA (technology of gene surgery) (Berg)Determined base sequences in nucleic acids (Gilbert Sanger) 1981 Kenichi FukuiRoald Hoffmann JapanUnited States Theories on the progress of chemical reactions (frontier orbital theory) 1982 Aaron Klug South Africa Developed crystallographic methods for the elucidation of biologically important nucleic acid protein complexes 1983 Henry Taube Canada Reaction mechanisms of electron transfer, especially with metal complexes 1984 Robert Bruce Merrifield United States Method for the preparation of peptides and proteins 1985 Herbert A. HauptmanJerome Karle United StatesUnited States Developed direct methods for the determination of crystal structures 1986 Dudley R. HerschbachYuan T. LeeJohn C. Polanyi United StatesUnited StatesCanada Dynamics of chemical elementary processes 1987 Donald James CramCharles J. PedersenJean-Marie Lehn United StatesUnited StatesFrance Development of molecules with structurally specific interaction of high selectivity 1988 Johann DeisenhoferRobert HuberHartmut Michel GermanyGermanyGermany Determined the three-dimensional structure of a photosynthetic reaction center 1989 Thomas Robert CechSidney Altman United StatesUnited States Discovered the catalytic properties of ribonucleic acid (RNA) 1990 Elias James Corey United States Developed novel methods for the synthesis of complex natural compounds (retrosynthetic analysis) 1991 Richard R. Ernst Switzerland Developed high resolution nuclear magnetic resonance spectroscopy (NMR) 1992 Rudolph A. Marcus Canada - United States Theories of electron transfer 1993 Kary B. MullisMichael Smith United StatesGreat Britain - Canada Invention of the polymerase chain reaction (PCR)Development of site specific mutagenesis 1994 George A. Olah United States Carbocations 1995 Paul CrutzenMario MolinaF. Sherwood Rowland NetherlandsMexico - United StatesUnited States Work in atmospheric chemistry, particularly concerning the formation and decomposition of ozone 1996 Harold W. KrotoRobert F. Curl, Jr.Richard E. Smalley Great BritainUnited StatesUnited States Discovered fullerenes 1997 Paul Delos BoyerJohn E. WalkerJens C. Skou United StatesGreat BritainDenmark Elucidated the enzymatic mechanism underlying the synthesis of adenosine triphosphate (ATP)first discovery of an ion-transporting enzyme, Na+, K+-ATPase 1998 Walter KohnJohn A. Pople United StatesGreat Britain Development of the density-functional theory (Kohn)Development of computational methods in quantum chemistry (GAUSSIAN computer programs) (Pope) 1999 Ahmed H. Zewail Egypt - United States Studied the transition states of chemical reactions using femtosecond spectroscopy 2000 Alan J. HeegerAlan G. MacDiarmidHideki Shirakawa United StatesUnited StatesJapan Discovered and developed conductive polymers 2001 William S. KnowlesRyoji NoyoriKarl Barry Sharpless United StatesJapanUnited States Work on chirally catalysed hydrogenation reactions (Knowles Noyori)Work on chirally catalysed oxidation reactions (Sharpless) 2002 John Bennett FennJokichi TakamineKurt Wthrich United StatesJapanSwitzerland Developed soft desorption ionisation methods for mass spectrometric analyses of biological macromolecules (Fenn Tanaka)Developed nuclear magnetic resonance spectroscopy for determining the three-dimensional structure of biological macromolecules in solution (Wthrich) 2003 Peter AgreRoderick MacKinnon United StatesUnited States Discovered water channels for transport of water in cell membranesPerformed structural and mechanistic studies of ion channels in cells 2004 Aaron CiechanoverAvaram HershkoIrwin Rose IsraelIsraelUnited States Discovered and elucidated the process of ubiquitin-mediated protein degradation 2005 Yves ChauvinRobert H. GrubbsRichard R. Schrock FranceUnited StatesUnited States Developed the metathesis method of organic synthesis, allowing for advances in green chemistry 2006 Roger D. Kornberg United States for his studies of the molecular basis of eukaryotic transcription 2007 Gerhard Ertl Germany for his studies of chemical processes on solid surfaces 2008 Shimomura OsamuMartin ChalfieRoger Y. Tsien United States for the discovery and development of the green fluorescent protein, GFP 2009 Venkatraman RamakrishnanThomas A. SteitzAda E. Yonath United KingdomUnited StatesIsreal for studies of the structure and function of the ribosome 2010 Ei-ichi NegishiAkira SuzukiRichard Heck JapanJapanUnited States for the development of palladium-catalyzed cross coupling 2011 Daniel Shechtman Israel for the discovery of quasi-crystals 2012 Robert Lefkowitz and Brian Kobilka United States for studies of G-protein-coupled receptors 2013 Martin Karplus, Michael Levitt, Arieh Warshel United States for the development of multiscale models for complex chemical systems 2014 Eric Betzig, Stefan W. Hell, William E. Moerner (USA) United States, Germany, United States for the development of super-resolved fluorescence microscopy 2016 Jean-Pierre Sauvage, Sir J. Fraser Stoddart, Bernard L. Feringa France, United States, Netherlands for the design and synthesis of molecular machines 2017 Jacques Dubochet, Joachim Frank, Richard Henderson Switzerland, United States, United Kingdom for developing cryo-electron microscopy for the high-resolution structure determination of biomolecules in solution
Monday, February 17, 2020
The Issue of Validity in Qualitative Research in Education Essay
The Issue of Validity in Qualitative Research in Education - Essay Example Research methods appeared to be applied in the field of education only in recent times. Among these methods we can also notice the qualitative research method though even now its application remains limited. Many researches like Johnson /1995, p.5/ believe that ââ¬Å"qualitative techniques are powerful tools for intensifying our understanding of teaching and learningâ⬠. He also agrees to the fact that these methodologies received ever growing popularity and acceptance over the last years. Yet it should be mentioned that although qualitative methods are very useful still many researches know little of them and the usage of these methods present great difficulties to them /Stallings, 1995, p.31/. Scholars believe that the main benefit in usage qualitative methods in education is more complete description of a phenomenon. The final objective of usage of qualitative method is better understanding of the information through giving additional details and appealing to the readerââ¬â¢s experience / Stake, 1978, p.5/. Qualitative research is used in the education process for several reasons. First of all qualitative research assist in understanding new of badly investigated phenomenon /Strauss & Corbin, 1990, p.42/. Secondly, qualitative research helps to comprehend new details about the phenomenon, which is already investigated. And finally qualitative research provides more deep and profound information which canââ¬â¢t be done by quantitative methods / Hoepfl/. Still the benefit of the qualitative method to the education can not be fully and explicitly defined. For example, Lancy believes that ââ¬Å"...topic, theory, and methodology are usually closely interrelated in qualitative researchâ⬠/Lancy, 1993, p.18/. Other researchers like Glesne and Peshkin claim that qualitative research covers many ââ¬Å"philosophical orientations to interpretive researchâ⬠and deals with a bride range of disciplines like educational criticism, ethnography, case
Monday, February 3, 2020
Power point presentation on The Goblin shark , the retractable jaw, PowerPoint
Power point on The Goblin shark , the retractable jaw, shape and colour of body as well as the electro-sensitive organs for finding prey - PowerPoint Presentation Example The goblin sharkââ¬â¢s classification is as follows: it is from the kingdom Animalia, under the phylum chordata, class chondrichthyes, the cartilagenous fishes, subclass elasmobranchii, order lamniformes, family mitsukurinidae, genus mitsukurina, and species owstoni. The English common name is goblin shark, and its Japanese name is Ten-gu za-me, which is literally translated as goblin shark, due to the protruding snout. Slide 4 The goblin shark is mostly seen in the coastal areas of Tosa Bay and Boso Peninsula in Japan, where it was first seen. They are demersal, meso-pelagic to benthic, and are mostly found in the bottom of the ocean floor, as evidenced by fishermen catching them in nets that are dragged on the bottom of the ocean. They can be found as deep as 2000m. They are mostly found in temperate areas, but are also found around the tropics, as shown in the succeeding slide. Slide 5 As seen from the distribution pattern, in yellow, these are the areas where sightings of the goblin shark are recorded from mostly sparse literature available. Because of the inability of the shark to live in aquariums, presumably due to its adaption in living at great depths, other parts of its life cycle such as reproduction and growth are remained in obscurity. However, examining the bowels of dead goblin sharks have made their feeding habits and prey known. Slide 6 As apex predators of the ocean, goblin sharks are just like other sharks that have electro-sensitive organs called the ampullae of Lorenzini, which detect the motions of prey near the ocean floor. Their retractable jaws suck in prey, and with the combination of their blade-like teeth prevent the prey from escaping. They are also known to be nocturnal, due to some sightings of them surfacing the waters at night. Slide 7 The prey most found in the stomachs of the goblin sharks that were caught were small, mesopelagic teleosts such as lantern
Sunday, January 26, 2020
Statistics Essays | Analysis of Data
Statistics Essays | Analysis of Data Consider and discuss the required approach to analysis of the data set provided. As part of this explore also how you would test the hypothesis below and explain the reasons for your decisions. Hypothesis 1: Male children are taller than female children. Null hypothesis; There is no difference in height between male children and female children. Hypothesis 2: Taller children are heavier. Null hypothesis: There is no relationship between how tall children are and how much they weigh. Analysis of data set The data set is a list of 30 childrens gender, age, height, the data weight, upper and lower limb lengths, eye colour, like of chocolate or not andIQ. There are two main things to consider before and the data. These are the types of data and the quality of the data as a sample. Types of data could be nominal, ordinal, interval or ratio.Nominal is also know as categorical. Coolican (1990) gives more details of all of these and his definitions have been used to decide the types of data in the data set. It is also helpful to distinguish between continuous numbers, which could be measured to any number of decimal places an discrete numbers such as integers which have finite jumps like 1,2 etc. Gender This variable can only distinguish between male or female.There is no order to this and so the data is nominal. Age This variable can take integer values. It could be measured to decimal places, but is generally only recorded as integer. It is ratio data because, for example, it would be meaningful to say that a 20 year old person is twice as old as a 10 year old. In this data set, the ages range from 120 months to 156months. This needs to be consistent with the population being tested. Height This variable can take values to decimal places if necessary. Again it is ratio data because, for example, it would be meaningful to say that a person who is 180 cm tall is 1.5 times as tall as someone 120cmtall. In this sample it is measured to the nearest cm. Weight Like height, this variable could take be measured to decimal places and is ratio data. In this sample it is measured to the nearest kg. Upper and lower limb lengths Again this variable is like height and weight and is ratio data. Eye colour This variable can take a limited number of values which are eye colours. The order is not meaningful. This data is therefore nominal(categorical). Like of chocolate or not As with eye colour, this variable can take a limited number of values which are the sample members preferences. In distinguishing merely between liking and disliking, the order is not meaningful. This data is therefore nominal (categorical). IQ IQ is a scale measurement found by testing each sample member. As such it is not a ratio scale because it would not be meaningful to say, for example, that someone with a score of 125 is 25% more intelligent than someone with a score of 100. There is another level of data mentioned by Cooligan into which none of the data set variables fit. That is Ordinal Data. This means that the data have an order or rank which makes sense. An example would be if 10students tried a test and you recorded who finished quickest, 2ndquickest etc, but not the actual time. The data is intended to be a sample from a population about which we can make inferences. For example in the hypothesis tests we want toknow whether they are indicative of population differences. The results can only be inferred on the population from which it is drawn it would not be valid otherwise. Details of sampling methods were found in Bland (2000). To accomplish the required objectives, the sample has to be representative of the defined population. It would also be more accurate if the sample is stratified by known factors like gender and age. This means that, for example, the proportion of males in the sample is the same as the proportion in the population. Sample size is another consideration. In this case it is 30.Whether this is adequate for the hypotheses being tested is examined below. Hypothesis 1: Male children are taller than female children. Swift (2001) gives a very readable account of the hypothesis testing process and the structure of the test. The first step is to set up the hypotheses: The Null hypothesis is that there is no difference in height between male children and female children. If the alternative was as Coolican describes it as we do not predict in which direction the results will go then it would have been a two-tailed test. In this case the alternative is that males are taller it is therefore a specific direction and so a one-tailed test is required. To test the hypothesis we need to set up a test statistic and then either match it against a pre-determined critical value or calculate the probability of achieving the sample value based on the assumption that the null hypothesis is true. The most commonly used significance level is 0.05. Accordingto Swift (2001) the significance level must be decided before the data is known. This is to stop researchers adjusting the significance level to get the result that they want rather than accepting or rejecting objectively. If the test statistic probability is less than 0.05 we would reject the null hypothesis that there is no difference between males and females in favour of males being heavier on the one sided basis. However it is possible for the test statistic to be in the rejection zone when in fact the null hypothesis is true. This is called a TypeI error. It is also possible for the test statistic to be in the acceptance zone when the alternative hypothesis is true (in other words the null hypothesis is false). This is called a Type II error. Power is 1 -probability of a Type II error and is therefore the probability of correctly rejecting a false null hypothesis. Whereas the Type I error is set at the desired level, the Type II error depends on the actual value of the alternative hypothesis. Coolican (1990) sets out the possible outcomes in the following table:
Friday, January 17, 2020
One amazing thing summary Essay
One Amazing Thing by: Chitra Divakaruni. It was first published in the US in voice by Hyperion in 2009 and later published by Penguin books India February 2010. The book also has 240 pages. Chitra B. Divakaiumi is an award winning author poet. Her work is widely known, as she has been published in over 500 magazines. Including Atlantic Monthly and The New Yorker, and her writing has been included in over 50 anthologies. She was born in India and lived there until 1976. At which point she left Calcutta and came to the United States. A young woman Uma, sits in the waiting room of the India passport office. She starts to get very impatient, and she entertains herself by observing the other people in the waiting room with her. Everyone has a reason of why they want to enter into India. In the waiting area their waits an Africa American war veteran Cameron who takes charge, but some are unhappy about it. A Muslim names Tariq. An upper class Caucasian couple that really donââ¬â¢t get alone. A Chinese grandmother with a secret past, and her granddaughter, two visa office workers on the verge of and affair Malathi and Mr. Mangalam, and Uma. As they all set in the waiting area Uma starts to feel a little rumbling and that when the earthquake strikes. When everything settles down, there were some major injuries as well as some minor injuries. People started to go into survival mode, as there is little food to eat. The office starts to flood. So emotional stress seems to much for everyone to handle as they wait to be rescued or die. So thatââ¬â¢s when Uma comes up with everyone telling ââ¬Å"One Amazing Thingâ⬠, about themselves because she believes that no one can go through life without encountering at least one amazing thing. So everyone begin to tell one amazing thing that they have never told anyone before. With One Amazing Thing everyone discover so much from each other as well as their selves. Elderly Caucasian couple Mr. and Mrs. Pritchet going through a difficult time in their marriage, an Indian-Muslim man Tariq who is disillusioned and angry with the new US, as Chinese lady Jiang who loved and lost a man in her younger days, her granddaughter Lily, a middle age army officer haunted by his guilt Cameron, Malathi a visa officer who is engaging in a affair with her boss, Mr. Mangalam on the verge of an extra-martial affair, an Indian-American student Uma, who is confused by her parents decision to return to Kolkata after living in the US for over 20 years. The plot focuses on a group of strangers who are trapped in a visa office. Most customers even some staff have come and gone, but nine people remain in the office. When an earthquake rips through the afternoon, trapping these nine characters together, their focus first is to survive through the struggle. There is a little food from which came from what people had. The office begins to flood, and everyone starts to panic and get really scared and frustrated. So when the emotional stress seems to be to much for them to bear, the young lady Uma tells them to tell a personal tale about them that no one knows about ââ¬Å"One Amazing Thingâ⬠, from what they have been through in life. So all of their stories from the romance, self-discovery, family, etc. This novel really proves the power of a lot of stories and the meaning of us as humanââ¬â¢s expressions itself. In my opinion the book ââ¬Å"One Amazing Thingâ⬠, is an engaging book because it reinforces the idea that all of us are different and unique in our own ways, and that we all have stories of our lives that may be interesting or not to tell. We all can connect to this book or see one another if we are willing to take the time out to listen to people. Because everyone has a something to tell, and amazing is not always positive words. But describes something that might have changed a life, or the course of someone life. Some of the stories are very heart breaking, but all of them paint a picture in some way of the characters and why they may be who they have become.
Thursday, January 9, 2020
Improve Your Life and the World With a Masters Degree In Criminal Justice 2019
The criminal justice system grows increasingly complex and challenging each year. It includes penal law, social control, constitutional law, criminal procedure and evidence, criminology, victimology, policing, courts, corrections and community services, as well as politics. With the creation of the Department of Homeland Security, the field of Criminal Justice has expanded at a rapid rate. If you are currently employed in this field, you can take your place as a leader by earning a Masters Degree in Criminal Justice. You can broaden your professional knowledge and competencies in criminal justice research, theory, administration and practice. Because this degree can be earned at your own pace, in your own home and on your own time, you need not worry about leaving your current employment or moving your family. There are several options available online for you to investigate in the pursuit of your goal. An example is the Master of Arts in Criminal Justice at Umass Online. This degree will assist you in developing the professional skills necessary to assume a position of importance in the field. Umass has been named one of the best schools in the country, and its criminal justice program was established in 1984. Standard classes such as Criminology and Research Methods are offered, along with cutting edge classes like Crime Mapping, Domestic Violence and Terrorism. .ud7aaabdda4531fd33b9bb4f6fac25ac1 { padding:0px; margin: 0; padding-top:1em!important; padding-bottom:1em!important; width:100%; display: block; font-weight:bold; background-color:#eaeaea; border:0!important; border-left:4px solid #34495E!important; box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -moz-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -o-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -webkit-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); text-decoration:none; } .ud7aaabdda4531fd33b9bb4f6fac25ac1:active, .ud7aaabdda4531fd33b9bb4f6fac25ac1:hover { opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; text-decoration:none; } .ud7aaabdda4531fd33b9bb4f6fac25ac1 { transition: background-color 250ms; webkit-transition: background-color 250ms; opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; } .ud7aaabdda4531fd33b9bb4f6fac25ac1 .ctaText { font-weight:bold; color:inherit; text-decoration:none; font-size: 16px; } .ud7aaabdda4531fd33b9bb4f6fac25ac1 .post Title { color:#000000; text-decoration: underline!important; font-size: 16px; } .ud7aaabdda4531fd33b9bb4f6fac25ac1:hover .postTitle { text-decoration: underline!important; } READ From IT School to an IT CareerThree areas of emphasis are offered in the Master of Science in Criminal Justice degree from the University of Wisconsin, Platteville. The first is criminal justice theory emphasis, appropriate for continuing education in a PhD program, teaching at the college level, or a career in government research. The criminal justice management emphasis is tailored for those seeking promotion into administrative positions. The last emphasis is the victim and offender service program for those interested in working with crime victims, juveniles, probation and parole clients. The University of Massachusetts Lowell offers a Masters Degree in Criminal Justice, and has been named one of the best in the country. This degree serves four types of students: Those seeking a masters degree as a prerequisite for entry into the criminal justice field. Individuals currently in service who wish to broaden skills and expertise. Those in the criminal justice system seeking to specialize within the system. Candidates wishing to obtain the training necessary to meet the growing need for teaching criminal justice. .u0541755d81234ff5da30bd8a9ebd6246 { padding:0px; margin: 0; padding-top:1em!important; padding-bottom:1em!important; width:100%; display: block; font-weight:bold; background-color:#eaeaea; border:0!important; border-left:4px solid #34495E!important; box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -moz-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -o-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); -webkit-box-shadow: 0 1px 2px rgba(0, 0, 0, 0.17); text-decoration:none; } .u0541755d81234ff5da30bd8a9ebd6246:active, .u0541755d81234ff5da30bd8a9ebd6246:hover { opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; text-decoration:none; } .u0541755d81234ff5da30bd8a9ebd6246 { transition: background-color 250ms; webkit-transition: background-color 250ms; opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; } .u0541755d81234ff5da30bd8a9ebd6246 .ctaText { font-weight:bold; color:inherit; text-decoration:none; font-size: 16px; } .u0541755d81234ff5da30bd8a9ebd6246 .post Title { color:#000000; text-decoration: underline!important; font-size: 16px; } .u0541755d81234ff5da30bd8a9ebd6246:hover .postTitle { text-decoration: underline!important; } READ Employment Opportunities With an Associate's Degree in Criminal JusticeThe U. S. Department of Labor has predicted that by 2017 there will be more than a 29% increase in the demand for FBI Agents, Police Officers, Private Detectives, and U.S. Customs Agents. Most of the best jobs in criminal justice require an advanced Criminal Justice Degree. To take your place among this elite group of law enforcement professionals, get online and get started. You can make your world and the world around you a better place. Related ArticlesFind Online Law and Social Science Degree ProgramsCareer Opportunities With a Criminal Justice DegreeOnline Criminal Justice Program Practice Law Enforcement for the Courts as a BailiffHelping the Nation With an Online Associates in Criminal JusticePrepare for Leadership Positions with a Criminal Justice Administration ProgramCriminal Justice Bachelor Degree Single Parents in Colorado Find Convenience at Kaplan University
Wednesday, January 1, 2020
Digital Citizenship - Free Essay Example
Sample details Pages: 1 Words: 394 Downloads: 8 Date added: 2019/04/15 Category Society Essay Level High school Tags: Citizenship Essay Did you like this example? After the digital citizenship post, I learned thatdont give your life a lemon~ Do you know a stunning fact that nowadays we have approximately 2,095,006,005 online users around the world? Donââ¬â¢t waste time! Our writers will create an original "Digital Citizenship" essay for you Create order Do you notice that your friends eyes including yours are glued to electronic devices such as Ipads, Iphones, smartphones, etc every day Also, do you know that teens spend almost 9 hours per day on social platforms, and about 30 % of that time is allocated to social media such as Facebook, Twitter, and Instagram (Social Wall by Peter Krobath via Flickr CC BY-NC-ND 2.0) Please! Dont be stuck in the social media for a long time! Nowadays, with the advent of advanced technology, people are totally immersed in the world full of social media. Hey, guys, dont spend too much time there. (Facebook Is The Anti-Christ Just Like MySpace Was Satans Little Helper! by Lance Scurvin via Flickr CC BY-NC-ND 2.0) Dont you know that if you hang out with your friends there for so long, your ideas will be restricted only by your friends in the closed system, and other different beliefs, ideas, and ideologies will be cemented. This phenomenon is called Echo chamber, in which filter bubbles filter out all of the other ideas, which restricts your independent and creative thinking ability. Plz! Dont be stuck in the social media! Try to think outside the box!!!! (Living in a box by OlliL via Flickr CC BY-NC-ND 2.0) Do you have a chance to interact with a person today? Hey! Guys, its time for you to think about your life? Do you have a conversation with anyone today? Hey, dont get me wrong! Here, I mean having conversation with strangers, or someone you dont know very well. Do you have a conversation with anyone today? Its true that everyone craves connection and interaction with others, but now, many people use the social media to make anonymous friends on the other side of the world. Dont you think that whoever spends too much time chatting on line makes you feel the person is pathetic? You have to know that though its AWESOME to make friends online, you even at the end of the day, dont really understand what your online friend is really about! Worse, you become disconnected with the society and your real-world friends because you devote too much time and energy online chatting with your anonymous friends.
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