Thursday, September 19, 2019

The Practice of Religion in Public Schools Essay -- Prayer in Public Sc

The Practice of Religion in Public Schools The â€Å"establishment† or â€Å"religion† clause of the First Amendment of the Constitution reads: â€Å"Congress shall make no law respecting an establishment of religion, or prohibiting the free exercise thereof† (Education Week, 2003, para. 2). It is from this clause that the idea of separation of church and state comes. It is also the basis for much of the debate regarding the practice of religion in public schools (Education Week, 2003). One of the big questions regarding the religion issue is where to draw the line between separation of church and state and religious freedom. The practice of religion in public schools can balance these two ends by allowing students to individually exercise their religious freedom, so long as they do not interfere with that of other students. Throughout the twentieth century, the United States Supreme Court has protected students’ rights to practice their religious beliefs, so long as they are not â€Å"disruptive, discriminatory, or coercive to peers who may not share those same beliefs† (Education Weekly, 2003, para. 3). In 1943, the Supreme Court ruling in West Virginia State Board of Education v. Barnette stated that students could not be â€Å"forced to salute the flag or say the pledge of allegiance if it violates the individual’s conscience† (First Amendment Cyber Tribune, 2002). The 1963 decision in Engel v. Vitale made school prayer unconstitutional, and similarly found school prayer at graduation ceremonies in its 1992 Lee v. Weisman decision (First Amendment Cyber Tribune, 2002). Student-led prayer at public school football games was found unconstitutional in 2000 with the Santa Fe Independent School District v. Doe (First Amendment C... ...il). Religion in Schools. Retrieved April 30, 2003, from http://www.educationweek.org/context/topics/issuespage.cfm?id=60. This website provided a summary of the issue of religion in schools and reviewed several Supreme Court decisions related to the issue. First Amendment Cyber Tribune. (2002, July). Freedom of Religion: An Overall View of Religious Liberty as Defined by U.S. Supreme Court Cases. Retrieved May 3, 2003, from http://w3.trib.com/FACT/1st.religion.html. This website listed several Supreme Court cases dealing with the issue of religion in schools and provided short explanations of each opinion. Riley R. Religious Expression in Public Schools. Retrieved May 3, 2003, from http://www.ed.gov/Speeches/08-1995/religion.html. This website provided a copy of the U.S. Secretary of Education’s guidelines on religious expression in public schools.

Wednesday, September 18, 2019

Saturday Morning Cartoons :: Television TV Cartoons Essays

Saturday Morning Cartoons Saturday morning cartoons are on the verge of becoming extinct on the major networks. Year after year there are continually less and worse cartoons on Saturday mornings. It was painful and sad but I thought that they had hit rock bottom and they will only get better from here. However, it now seems that cartoons may very well slide out of existence. How did this happen? Where have all the cartoons gone? Is there any hope in the future or will we all lead a cold, miserable existence (ok it might not be that bad). First, it would probably help to start at the beginning of Saturday morning cartoons and give a history to find out how we got here. Saturday morning cartoons have been around since the 1950’s. Since many people who worked in radio knew that most kids programming does better on Saturday mornings than any other time. Like most television programming of this time most these cartoons seemed like radio programs with pictures and really didn’t utilize the medium. Nevertheless these cartoons were spearheading the way for future cartoons. This era gave birth to The Rocky and Bullwinkle and Popeye. The most popular cartoon, however, was Mighty Mouse Playhouse. The show had the ability to mix action with comedy, which seems to be the key to most good cartoons. In the sixties and seventies a lot things were changing in America and cartoons were no exception. These were the first â€Å"post-T.V.† cartoons and this era was referred to as the â€Å"golden-age† of Saturday morning cartoons. During this time some of the most influential and longest running cartoons debuted on Saturday morning. The one cartoon, however, that attracted the highest ratings was the Beatles cartoon. Fortunately, after its initial season the ratings dropped off dramatically and the show was canceled. Bugs Bunny first appeared on Saturday morning in 1960 and has continued to be shown on one station or another for the last 40 years. Scooby-Doo first started in 1969 and also continues to be shown today. The Jetsons, which originally started out in primetime, was very popular on Saturday mornings as well. This time period also gave birth to some the very first â€Å"action† cartoons on Saturday morning.

Tuesday, September 17, 2019

Distractions: Classroom and Facebook Essay

Electronics is one of the main and worst distractions. Cell phones, laptops, desktop, and various other electronics are some of just a few distractions that take place in the class room, But the biggest one I think is laptops. People use laptops in the classroom to take notes, plan there day, and to do work on, but after a while it can those same usefulness can become a distraction. A lot of professors and instructors have decided to ban laptops from the classroom because people tend to lose focus with laptops in front of them. They start to go off and do other things like on Facebook or YouTube. This can become a big problem because they not paying attention so they don’t know what’s going on with the lesson which can affect what students might need to do for homework or what they need to study for that big test coming up. They not only are a distraction to the person using it but also a distraction to people around them. The typing may become annoying to a neighbor who may need to focus. Some professors find them a really distracting the typing and students seem to find more interest in the computer then in the lesson. Along with Cell phones, Laptops are becoming banned from classrooms due to the distraction to the person that uses them, their peers, and their professor. Laptops are just one of many distractions in the classroom and is one of the worst and main distractions along with cell phones and various other electronics that cause distractions.

Monday, September 16, 2019

Evolution of Mobile Phone Technology

A mobile phone (also known as a cellular phone, cell phone and a hand phone) is a device that can make and receive telephone calls while moving around a wide geographic area. It does so by connecting to a cellular network provided by a mobile phone operator, allowing access to the public telephone network. By contrast, a cordless telephone is used only within the short range of a single, private base station. In addition to telephony, modern mobile phones also support a wide variety of other services such as text messaging, MMS, email, Internet access, short-range wireless communications (infrared, Bluetooth), business applications, gaming and photography. Mobile phones that offer these and more general computing capabilities are referred to as smartphones. The first hand-held mobile phone was demonstrated by John F. Mitchell and Dr Martin Cooper of Motorola in 1973, using a handset weighing around 2. 2 pounds (1 kg). From 1990 to 2011, worldwide mobile phone subscriptions grew from 12. million to over 6 billion, penetrating about 87% of the global population and reaching the bottom of the economic pyramid. In 2012, for the first time since 2009 mobile phone sales to end users is declining by 1. 7 percent to 1. 75 billion units which is dominated by Samsung for 385 million units (53. 5 percent is smartphones) and Apple for 130 million units of all smartphones. History The first mobile tel ephone calls were made from cars in 1946. Bell System's Mobile Telephone Service was made on 17 June in St. Louis, Missouri, followed by Illinois Bell Telephone Company's car radiotelephone service in Chicago on 2 October. The MTA phones were composed of vacuum tubes and relays, and weighed over 80 pounds (36 kg).. John F. Mitchell, Motorola's chief of portable communication products in 1973, played a key role in advancing the development of handheld mobile telephone equipment. Mitchell successfully pushed Motorola to develop wireless communication products that would be small enough to use anywhere and participated in the design of the cellular phone. Martin Cooper, a Motorola researcher and executive, was the key researcher on Mitchell's team that developed the first hand-held mobile telephone for use on a cellular network. Using a somewhat heavy portable handset, Cooper made the first call on a handheld mobile phone on 3 April 1973 to his rival, Dr. Joel S. Engel of Bell Labs. As I walked down the street while talking on the phone, sophisticated New Yorkers gaped at the sight of someone actually moving around while making a phone call. Remember that in 1973, there weren't cordless telephones or cellular phones. I made numerous calls, including one where I crossed the street while talking to a New York radio reporter – probably one of the more dangerous things I have ever done in my life. Martin Cooper The new invention sold for $3,995 and weighed two pounds, leading to a nickname â€Å"the brick†. The world's first commercial automated cellular network was launched in Japan by NTT in 1979, initially in the metropolitan area of Tokyo. In 1981, this was followed by the simultaneous launch of the Nordic Mobile Telephone (NMT) system in Denmark, Finland, Norway and Sweden. Several countries t hen followed in the early-to-mid 1980s including the UK, Mexico and Canada. On 6 March 1983, the DynaTAc mobile phone launched on the first US 1G network by Ameritech. It cost $100m to develop, and took over a decade to hit the market. The phone had a talk time of just half an hour and took ten hours to charge. Consumer demand was strong despite the battery life, weight, and low talk time, and waiting lists were in the thousands. In 1991, the second generation (2G) cellular technology was launched in Finland by Radiolinja on the GSM standard, which sparked competition in the sector as the new operators challenged the incumbent 1G network operators. Ten years later, in 2001, the third generation (3G) was launched in Japan by NTT DoCoMo on the WCDMA standard. By 2009, it had become clear that, at some point, 3G networks would be overwhelmed by the growth of bandwidth-intensive applications like streaming media. Consequently, the industry began looking to data-optimized 4th-generation technologies, with the promise of speed improvements up to 10-fold over existing 3G technologies. The first two commercially available technologies billed as 4G were the WiMAX standard (offered in the U. S. by Sprint) and the LTE standard, first offered in Scandinavia by TeliaSonera. Handheld mobile phone Prior to 1973, mobile telephony was limited to phones installed in cars and other vehicles. [13] Motorola and Bell Labs raced to be the first to produce a handheld mobile phone. That race ended on 3 April 1973 when Martin Cooper, a Motorola researcher and executive, made the first mobile telephone call from handheld subscriber equipment, placing a call to Dr. Joel S. Engel of Bell Labs. The prototype handheld phone used by Dr. Cooper weighed 2. 5 pounds and measured 9 inches long, 5 inches deep and 1. 75 inches wide. The prototype offered a talk time of just 30 minutes and took 10 hours to re-charge. John F. Mitchell, Motorola's chief of portable communication products and Cooper's boss in 1973, played a key role in advancing the development of handheld mobile telephone equipment. Mitchell successfully pushed Motorola to develop wireless communication products that would be small enough to use anywhere and participated in the design of the cellular phone. Analog cellular networks – 1G The first analog cellular system widely deployed in North America was the Advanced Mobile Phone System (AMPS). It was commercially introduced in the Americas in 1978, Israel in 1986, and Australia in 1987. AMPS was a pioneering technology that helped drive mass market usage of cellular technology, but it had several serious issues by modern standards. It was unencrypted and easily vulnerable to eavesdropping via a scanner; it was susceptible to cell phone â€Å"cloning;† Many of the iconic early commercial cell phones such as the Motorola DynaTAC Analog AMPS were eventually superseded by Digital AMPS (D-AMPS) in 1990, and AMPS service was shut down by most North American carriers by 2008. Digital cellular networks – 2G In the 1990s, the ‘second generation' mobile phone systems emerged. Two systems competed for supremacy in the global market: the European developed GSM standard and the U. S. developed CDMA standard. These differed from the previous generation by using digital instead of analog transmission, and also fast out-of-band phone-to-network signaling. The rise in mobile phone usage as a result of 2G was explosive and this era also saw the advent of prepaid mobile phones. In 1991 the first GSM network (Radiolinja) launched in Finland. In general the frequencies used by 2G systems in Europe were higher than those in America, though with some overlap. For example, the 00 MHz frequency range was used for both 1G and 2G systems in Europe, so the 1G systems were rapidly closed down to make space for the 2G systems. In America the IS-54 standard was deployed in the same band as AMPS and displaced some of the existing analog channels. In 1993, IBM Simon was introduced. This was possibly the world's first smartphone. It was a mobile phone, pager, fax machine, and PD A all rolled into one. It included a calendar, address book, clock, calculator, notepad, email, and a touchscreen with a QWERTY keyboard. The IBM Simon had a stylus you used to tap the touch screen with. It featured predictive typing that would guess the next characters as you tapped. It had apps, or at least a way to deliver more features by plugging a PCMCIA 1. 8 MB memory card into the phone. Coinciding with the introduction of 2G systems was a trend away from the larger â€Å"brick† phones toward tiny 100–200g hand-held devices. This change was possible not only through technological improvements such as more advanced batteries and more energy-efficient electronics, but also because of the higher density of cell sites to accommodate increasing usage. The latter meant that the average distance transmission from phone to the base station shortened, leading to increased battery life whilst on the move. The second generation introduced a new variant of communication called SMS or text messaging. It was initially available only on GSM networks but spread eventually on all digital networks. The first machine-generated SMS message was sent in the UK on 3 December 1992 followed in 1993 by the first person-to-person SMS sent in Finland. The advent of prepaid services in the late 1990s soon made SMS the communication method of choice amongst the young, a trend which spread across all ages. G also introduced the ability to access media content on mobile phones. In 1998 the first downloadable content sold to mobile phones was the ring tone, launched by Finland's Radiolinja (now Elisa). Advertising on the mobile phone first appeared in Finland when a free daily SMS news headline service was launched in 2000, sponsored by advertising. Mobile p ayments were trialed in 1998 in Finland and Sweden where a mobile phone was used to pay for a Coca Cola vending machine and car parking. Commercial launches followed in 1999 in Norway. The first commercial payment system to mimic banks and credit cards was launched in the Philippines in 1999 simultaneously by mobile operators Globe and Smart. The first full internet service on mobile phones was introduced by NTT DoCoMo in Japan in 1999. Mobile broadband data – 3G As the use of 2G phones became more widespread and people began to utilize mobile phones in their daily lives, it became clear that demand for data services (such as access to the internet) was growing. Furthermore, experience from fixed broadband services showed there would also be an ever increasing demand for greater data speeds. The 2G technology was nowhere near up to the job, so the industry began to work on the next generation of technology known as 3G. The main technological difference that distinguishes 3G technology from 2G technology is the use of packet switching rather than circuit switching for data transmission. In addition, the standardization process focused on requirements more than technology (2 Mbit/s maximum data rate indoors, 384 kbit/s outdoors, for example). Inevitably this led to many competing standards with different contenders pushing their own technologies, and the vision of a single unified worldwide standard looked far from reality. The standard 2G CDMA networks became 3G compliant with the adoption of Revision A to EV-DO, which made several additions to the protocol whilst retaining backwards compatibility: * the introduction of several new forward link data rates that increase the maximum burst rate from 2. 45 Mbit/s to 3. 1 Mbit/s. * protocols that would decrease connection establishment time. the ability for more than one mobile to share the same time slot. * the introduction of QoS flags. All these were put in place to allow for low latency, low bit rate communications such as VoIP. The first pre-commercial trial network with 3G was launched by NTT DoCoMo in Japan in the Tokyo region in May 2001. NTT DoCoMo launched the first commercial 3G network on 1 October 2001, using the WCDMA technology. In 2002 the first 3G networks on the rival CDMA2000 1xEV-DO technology were launched by SK Telecom and KTF in South Korea, and Monet in the USA. Monet has since gone bankrupt. By the end of 2002, the second WCDMA network was launched in Japan by Vodafone KK (now Softbank). European launches of 3G were in Italy and the UK by the Three/Hutchison group, on WCDMA. 2003 saw a further 8 commercial launches of 3G, six more on WCDMA and two more on the EV-DO standard. In the mid 2000s (decade), an evolution of 3G technology begun to be implemented, namely High-Speed Downlink Packet Access (HSDPA). It is an enhanced 3G (third generation) mobile telephony communications protocol in the High-Speed Packet Access (HSPA) family, also coined 3. G, 3G+ or turbo 3G, which allows networks based on Universal Mobile Telecommunications System (UMTS) to have higher data transfer speeds and capacity. Current HSDPA deployments support down-link speeds of 1. 8, 3. 6, 7. 2 and 14. 0 Mbit/s. Further speed increases are available with HSPA+, which provides speeds of up to 42 Mbit/s downlink and 84 Mbit/s with Release 9 of the 3GPP standards. By the end of 2007, there were 295 million subscribers on 3G networks worldwide, which reflected 9% of the total worldwide subscriber base. About two thirds of these were on the WCDMA standard and one third on the EV-DO standard. The 3G telecoms services generated over 120 Billion dollars of revenues during 2007 and at many markets the majority of new phones activated were 3G phones. In Japan and South Korea the market no longer supplies phones of the second generation. Although mobile phones had long had the ability to access data networks such as the Internet, it was not until the widespread availability of good quality 3G coverage in the mid-2000s (decade) that specialized devices appeared to access the mobile internet. The first such devices, known as â€Å"dongles†, plugged directly into a computer through the USB port. Another new class of device appeared subsequently, the so-called â€Å"compact wireless router† such as the Novatel MiFi, which makes 3G internet connectivity available to multiple computers simultaneously over Wi-Fi, rather than just to a single computer via a USB plug-in. Such devices became especially popular for use with laptop computers due to the added portability they bestow. Consequently, some computer manufacturers started to embed the mobile data function directly into the laptop so a dongle or MiFi wasn't needed. Instead, the SIM card could be inserted directly into the device itself to access the mobile data services. Such 3G-capable laptops became commonly known as â€Å"netbooks†. Other types of data-aware devices followed in the netbook's footsteps. By the beginning of 2010, E-readers, such as the Amazon Kindle and the Nook from Barnes & Noble, had already become available with embedded wireless internet, and Apple Computer had announced plans for embedded wireless internet on its iPad tablet devices beginning that Fall. Native IP networks – 4G By 2009, it had become clear that, at some point, 3G networks would be overwhelmed by the growth of bandwidth-intensive applications like streaming media. Consequently, the industry began looking to data-optimized 4th-generation technologies, with the promise of speed improvements up to 10-fold over existing 3G technologies. The first two commercially available technologies billed as 4G were the WiMAX standard (offered in the U. S. by Sprint) and the LTE standard, first offered in Scandinavia by TeliaSonera. One of the main ways in which 4G differed technologically from 3G was in its elimination of circuit switching, instead employing an all-IP network. Thus, 4G ushered in a treatment of voice calls just like any other type of streaming audio media, utilizing packet switching over internet, LAN or WAN networks via VoIP. Evolution 2G networks were built mainly for voice services and slow data transmission (defined in IMT-2000 specification documents), but are considered by the general public to be 2. 5G or 2. 75G services because they are several times slower than present-day 3G service. . 5G (GPRS) 2. 5G (â€Å"second and a half generation†) is used to describe 2G-systems that have implemented a packet-switched domain in addition to the circuit-switched domain. It does not necessarily provide faster services because bundling of timeslots is used for circuit-switched data services (HSCSD) as well. The first major step in the evolution of GSM networks to 3G occurred with the introdu ction of General Packet Radio Service (GPRS). CDMA2000 networks similarly evolved through the introduction of 1xRTT. The combination of these capabilities came to be known as 2. 5G. GPRS could provide data rates from 56 kbit/s up to 115 kbit/s. It can be used for services such as Wireless Application Protocol (WAP) access, Multimedia Messaging Service (MMS), and for Internet communication services such as email and World Wide Web access. GPRS data transfer is typically charged per megabyte of traffic transferred, while data communication via traditional circuit switching is billed per minute of connection time, independent of whether the user actually is utilizing the capacity or is in an idle state. 1xRTT supports bi-directional (up and downlink) peak data rates up to 153. kbit/s, delivering an average user data throughput of 80-100 kbit/s in commercial networks. It can also be used for WAP, SMS & MMS services, as well as Internet access. 2. 75G (EDGE) GPRS1 networks evolved to EDGE networks with the introduction of 8PSK encoding. Enhanced Data rates for GSM Evolution (EDGE), Enhanced GPRS (EGPRS), or IMT Single Carrier (IMT-SC) is a backward-compatible digital mobile phone technology that allows improved data transmission rates, as an extension on top of standard GSM. EDGE was deployed on GSM networks beginning in 2003—initially by Cingular (now AT&T) in the United States. EDGE is standardized by 3GPP as part of the GSM family and it is an upgrade that provides a potential three-fold increase in capacity of GSM/GPRS networks. Duplex A duplex communication system is a point-to-point system composed of two connected parties or devices that can communicate with one another in both directions. An example of a duplex device is a telephone. The people at both ends of a telephone call can speak at the same time, the earphone can reproduce the speech of the other person as the microphone transmits the speech of the local person, because there is a two-way communication channel between them. Duplex systems are employed in many communications networks, either to allow for a communication â€Å"two-way street† between two connected parties or to provide a â€Å"reverse path† for the monitoring and remote adjustment of equipment in the field. Systems that do not need the duplex capability use instead simplex communication in which one device transmits and the others just â€Å"listen. † Examples are broadcast radio and television, garage door openers, baby monitors, wireless microphones, radio controlled models, surveillance cameras, and missile telemetry.

Sunday, September 15, 2019

Another Look Back, and a Look Ahead

Imagine the impact technological innovations have had on society? How much did technology influence society a decade ago, and how much does it influence society now? Technology was created from humans to become a more efficient specie. Although technology has advanced society with respect to technology and efficiency, it has also created problems not previously seen because of the use of technology. Edward Tenner, a writer and technology consultant, wrote an article titled â€Å"Another Look Back, and a Look Ahead† published in 1996. In his article Tenner argues, through the use of the rhetorical appeal ethos, compare and contrast, and cause and effect, that society is advancing at an alarming rate and suggests a â€Å"retreating from intensity† (Tenner 78) in order to allow society to slow its progression and accustom itself to new technology. Tenner uses his credibility as an exceptional writer to appeal to audiences and inform them about the subject in his article. Throughout the article, Tenner uses an extensive vocabulary and shows fluency in his writing. In the sentence, â€Å"The prognosis for revenge effects is hopeful†¦by replacing brute force with finesse† (Tenner 60), Tenner shows his expertise by using collegial writing skills and even introduces a term he created, â€Å"revenge effects†. He is well informed about what he is talking about and never leaves the reader guessing what he is trying to say. The fact that he was formerly employed as the science editor at the Princeton University Press makes him an even more credible source. When Tenner talks about â€Å"the defeat of the Spanish Armada in 1588† (Tenner 63), it demonstrates to the reader he is educated and increases ethos. By the end of the article, Tenner has effectively made his case for society to slow its technological progression. Aside from using ethos in his article, Tenner uses compare and contrast to show his audience how technology has changed over time. Tenner provides many examples to show how they compare and contrast from now and the past. He talks about the sinking of the Titanic becoming a signal event, â€Å"one that reveals an ominous and previously underestimated kind of danger† (Tenner 64). At the time the Titanic was the biggest technological innovation to start the twentieth century. Ship engineers have become more aware of the dangers the ocean presents ships. Although in comparison ships might be of the same size and provide the same transportation over waters, its comparison shows they have evolved. â€Å"The higher potential speed of steamships requires more rather than less care. The larger number of passengers and crew required more careful drills and inspection of equipment† (Tenner 65). The speed of ships has significantly changed over time as well as the technology of ship engines which allow for them to reach significant speeds. Through these advances one could argue it has created an efficiency of allowing people to travel much faster, however Tenner reminds them of the â€Å"revenge effects† these innovations create. Today much more safety regulations are used than in the past, this is due to the new dangers technology creates. Another example Tenner uses is the comparison and contrast of transportation over time. Humans created the automobile to become more efficient and make travel and transportation much faster throughout the world. â€Å"Nearly every passenger journey or freight shipment began and ended with a horse-drawn vehicle or a horse† (Tenner 67). Due to technological innovations and Henry Ford’s assembly line, motor vehicles were created not only to suit the rich but for all society to enjoy. Through this progression people were not limited to where they could travel and the time it took to get there. People could take regular jobs that were far from home rather than having to move to accommodate their needs. Roads and freeways soon followed with the increase of automobile use. â€Å"The greatest surprise of motoring was the speed at which traffic clogged the roads, including freeways and other limited-access highways built to relieve congestion† (Tenner 70). Tenner compares the use of transportation over time, demonstrating that although it has made transportation much faster, it has created â€Å"revenge effects† such as traffic and congestion, things that before the technological innovation were never seen. Examples such as these have led Tenner to advise society to fix problems that new technologies bring not by creating new technologies to solve the problem, but by slowing down and addressing the problem itself, not a quick fix. Comparing and contrasting the impact technology has had on society effectively illustrate Tenner’s main argument, but through the use of cause and effect the audience can relate and understand how Tenner formed his thesis. In the text Tenner provides many cause and effect examples. An example Tenner uses is the effects that are created because of industrial carbon dioxide emissions. Industries that create carbon dioxide allow for many benefits such as electricity and transportation, but they are also responsible for warming the earth’s temperatures, â€Å"global warming†. â€Å"The increasing cultivation of the earth would bring about higher temperatures and eventually a melting of the polar icecap† (Tenner 76). Another cause/effect example Tenner uses is â€Å"strict directives on meat radiation after the Chernobyl meltdown of 1986 destroyed the Lapp reindeer-meat economy† (Tenner 76). A catastrophic event in Chernobyl created a lasting effect on the economy. Tenner argues that these technologies have many lasting effects, known as â€Å"revenge effects†. From beginning to end, Tenner’s article urges the reader to draw back from such a rapid progression of technology. Tenner argues, through the use of the rhetorical appeal ethos, compare and contrast, and cause and effect, technological innovation instead of creating efficiency create â€Å"revenge effects† which create more problems for society. Tenner suggests that society recoil its progression of technology, not forever, but until accustomed to the use of new technologies. Tenner’s argument in the article opens many readers eyes as to the real problems they choose to ignore due to technological innovation. This issue is relevant and provides a subject that all people can identify with. Technologies are all around society and the impact it has is colossal. Whatever your side of the argument for technologies and society may be, the reality Tenner presents reveal a need to retreat from intensive technological progression.

Saturday, September 14, 2019

Eastern Tobacco Company Essay

Introduction Why the Eastern Tobacco Company in Egypt is an example of monopolistic competition? Eastern Tobacco Company is known as the largest tobacco producer in Egypt. The company produces different products such as cigarettes, molasses tobacco, pipe tobacco and cigars (Oxford Business Group, 2008). Additionally, it produces other products that are related to cigarettes. These may include homogenized and filter rods tobacco (Owen & Pamuk, 1998). Their entire products are divided into two categories. These may include local and export products. The company is known as the largest company producing large amount of tobacco in Egypt Thus, it faces stiff competition by local and international companies that produces tobacco. Eastern Tobacco Company is an example of monopolistic competition (Owen & Pamuk, 1998). This is due to the fact that all tobacco industry is categorized in monopolistic competition. One of the viable reasons that make Eastern Tobacco Company to be categorized in monopolistic competition is the fact that there are quite a large number of companies that are producing the same products; however, they have differentiated them. This means that all companies under tobacco sector are satisfying the market demand for tobacco (Solow, 1999). Another reason that makes Eastern Tobacco Company to be a good example of monopolistic competition is the fact that it brings out differentiated products that are reasonably close substitutes for each other (Oxford Business Group, 2008).   For instance, the company brings into the market different types of cigarettes. These may include homogenized and filter rods cigarettes. It also produces different types of tobacco, for instance, molasses tobacco, pipe tobacco. Thus, the company has one of the characteristics of firms that are categorized in the group of monopolistic competition. Due to the fact that products are of close substitutes, there can be any reduction of price. This can be seen in Eastern Tobacco Company as they can be in a position to reduce the price of their products (Owen & Pamuk, 1998). This helps them to attract large number of customers and thus, they are perceived as the largest company in Egypt producing tobacco. One of the major characteristics of monopolistic competition is the fact that there are a large number of sellers (Solow, 1999). They tend to sell differentiated products. This can be evidenced in tobacco industry, as there is quite number of sellers that sell different types of tobacco. For instance, many local companies are selling same products as Eastern Tobacco Company. Thus, there is a different seller that sells tobacco like Eastern Tobacco Company. This means that Eastern Tobacco Company have achieved this characteristics of monopolistic competition where many sellers selling differentiated products dominate the industry. Eastern Tobacco Company does not have price competition. This is due to the fact that the company has the freedom to win over its entire customers. For instance, large number of customers prefers Eastern Tobacco Company as they offer after sales services. This is a situation where a buyer purchases large tonnes of tobacco and the company offers to take them to his or her home. Offering after sales services is one way that Eastern Tobacco Company uses to attract large number of customers. From the above point of view, it is clearly evidenced that Eastern Tobacco Company has all characteristics that monopolistic competition is associated with. Thus, it can be classified as a good example of monopolistic competition. For instance, the company has similar products but has differentiated them to different brands. These may include molasses tobacco, pipe tobacco (Oxford Business Group, 2008). Therefore, it is an example of monopolistic competition. References Owen, E. R. J., & Pamuk, S. (1998). A history of Middle East economies in the twentieth century.   Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚  Ã‚   London: I.B. Tauris Publishers. Oxford Business Group. (2008). The Report: Emerging Egypt 2008. London: Oxford Business Group. Solow, R. M. (1999). Monopolistic competition and macroeconomic theory. Cambridge [u.a.:   Ã‚  Ã‚   Cambridge Univ. Press.   

Friday, September 13, 2019

Business Cycle in Theory

The business cycle is a nonrepeating cycle of expansion from commercial activity to economic recession, which shows various upward trends. As part of the business cycle, the recession starts as the investment increases, and the economic recession expands as investment increases. From 1929 to 1933, GDP declined by 30% and the economy entered the Great Depression which continued until the Second World War. There have been ten recessions since 1945. To some extent, the 1990s like the 1920s included rapid economic growth and unprecedented prosperity (). From a conceptual point of view, linking innovation-based growth to business cycle theory is not new. The history of this idea can be traced back to at least Schumpeter (1934). Aghion and Howitt (1991) reviewed several attempts to unify growth and business cycle. Implementation cycle theory of Shleifer (1986) is an example of the conceptual relationship between (endogenous) business cycle and innovation-based growth theory. Cycle of repea ted innovation in enterprises due to externality of demand. Because we are looking forward to prosperity, prosperity will be self-fulfilling. However, to our knowledge, this is the first study to integrate diversity-based endogenous growth base and elements of the RBC method (note the attention to exogenous total productivity as the only uncertain factor Including). Because many people believe that there is an economic cycle, the economic cycle theory is important. This is not a permanent belief. In the 19th century, the economic cycle was not regarded as an economic cycle at all, but it was regarded as a spell of crisis that hampers the steady development of the economy. In the next few years economists and non economists began to believe in the regularity of these crises and analyzed how they relate to the segregated and changing economic structure. In society, it is said that history is constantly repeated. This is a business cycle that repeats the cycle that has been going on fo r many years, from the economic downturn to recovery and expansion. It will never end, it will not stop repeating Business Cycle in Theory The business cycle is a nonrepeating cycle of expansion from commercial activity to economic recession, which shows various upward trends. As part of the business cycle, the recession starts as the investment increases, and the economic recession expands as investment increases. From 1929 to 1933, GDP declined by 30% and the economy entered the Great Depression which continued until the Second World War. There have been ten recessions since 1945. To some extent, the 1990s like the 1920s included rapid economic growth and unprecedented prosperity (). From a conceptual point of view, linking innovation-based growth to business cycle theory is not new. The history of this idea can be traced back to at least Schumpeter (1934). Aghion and Howitt (1991) reviewed several attempts to unify growth and business cycle. Implementation cycle theory of Shleifer (1986) is an example of the conceptual relationship between (endogenous) business cycle and innovation-based growth theory. Cycle of repea ted innovation in enterprises due to externality of demand. Because we are looking forward to prosperity, prosperity will be self-fulfilling. However, to our knowledge, this is the first study to integrate diversity-based endogenous growth base and elements of the RBC method (note the attention to exogenous total productivity as the only uncertain factor Including). Because many people believe that there is an economic cycle, the economic cycle theory is important. This is not a permanent belief. In the 19th century, the economic cycle was not regarded as an economic cycle at all, but it was regarded as a spell of crisis that hampers the steady development of the economy. In the next few years economists and non economists began to believe in the regularity of these crises and analyzed how they relate to the segregated and changing economic structure. In society, it is said that history is constantly repeated. This is a business cycle that repeats the cycle that has been going on fo r many years, from the economic downturn to recovery and expansion. It will never end, it will not stop repeating