Sunday, September 8, 2019
Implications of Economic crisis on Greece economic Essay
Implications of Economic crisis on Greece economic - Essay Example Advancement in globalization can also be as a result of the advancement of internet. Business globalization can be termed as the idea of business organizations moving beyond their domestic markets to other markets in other countries. This paper aims at discussing globalization and how it affects the management of contemporary businesses. Globalization of businesses avails foreign goods in local markets. For instance, a person in South America can be sitting in their office sipping Italian wine while typing on a Chinese keyboard. This does not necessarily mean that this person had to travel all the way to Italy and China to seek such products. This is good for consumers of such products worldwide. For the business this will be good because with their goods being sold all over the world, they will not have to rely on the local markets (Etemad & Wright 2003, p. 89). With international markets, businesses will be able improve the diversity of their products to match the various needs and wants of different types of potential customers. This difference is always as a result of geographical, political, cultural, and economic differences of various people in the world. Globalization cannot be termed as a new concept. It is a concept that has been in business for centuries. However, it is only in the 21st century that globalization has become a common concept in business and business management. When business organizations exhaust the local markets they always find a way of stretching their territories into the international markets. At a point like this there are always many challenges that are always involved. However, as a business manager it is always good to take such challenges because they are always accompanied by best result. Globalization also leads to exchange of technologies. Businesses firms that have an international orientation always use new technologies to exploit new business opportunities. For instance, e-commerce and
Saturday, September 7, 2019
Research Brief Essay Example | Topics and Well Written Essays - 500 words
Research Brief - Essay Example The types of HRD interventions are classified into individual based, group based and inter group based interventions. The individual based interventions involve counseling, coaching, motivation and mentoring etc. the group based interventions involve group facilitation, virtual teams, conflict management and many others while the inter group based interventions involve third party peacemaking interventions as well as organization mirroring. The main focus is implied on the techno structural intervention. This deals with the restructuring of the entire organization. This restructuring is done with the area of the workload of the total organization by dividing it into several subunits in order for the effectual completion of the tasks. This restructuring can be done on certain major factors which include organization size, technology, worldwide operation, and environment and organization strategy (Sandhu.G et al, 2012). One of the most vital parts of the techno structural intervention is considered to the employee involvement which can be defined as the foundation of skills, power, information, knowledge and finally reward. One of the concluding modules of HRD interventions includes the work design. The work design involves not only the scientific management but also the motivational approach. The involvement of the employees in the process of organizational development is of core importance (Gamerdinger.1997). Without the part played by the employees in the interventions, success is never guaranteed. The impact of the employee involvement on the types of interventions can be made effective by providing them with several learning styles and processes which makes it able to enhance the positive outcome from the employees. Alongside the advantages that the implication of HRD interventions holds, there are certain challenges impacting the professional practice of HRD. These challenges not only affect the HRD
Friday, September 6, 2019
Example of Resume and Practical Application Letter Essay Example for Free
Example of Resume and Practical Application Letter Essay On behalf of the School of Business and Economics, I submit herewith an application for the student mentioned below to conduct his/her industrial training under your esteemed organization. The industrial training program is one of the course requirements for student to complete their Bachelor of Business (with honors) degree at University Malaysia Sabah. For your information, the placement should last for 3 months from 24 June 2013 to 13 September 2013. The main objective of this placement is to expose the student to the working environment in the corporate world, of which can be explained further by the attached ââ¬Å"Program Objectivesââ¬â¢Ã¢â¬â¢. The following student (enclosed CV) is majoring in Entrepreneurship: 1. BB1011xxxx ALIA UMAIRA BINTI MOHD RAFI (I/C NO: 901228-01-xxxx) For further information, please do not hesitate to contact any number of the practicum coordinator during office hours. In addition, below are few other objectives with regard to practical training: o To brief the trainees the roles and task performed as well as to prepare daily/weekly schedule. o To improve the trainees understanding on the companyââ¬â¢s roles and contribution towards the industry. o To provide opportunity for trainees to be involved in the organization operation management and other activities such as briefing/seminars, workshops, exhibition and etc. o To improve communication and public relation techniques in order to enhance better relationship within the company as well as the customers.
Thursday, September 5, 2019
Two Types Of Spread Spectrum Computer Science Essay
Two Types Of Spread Spectrum Computer Science Essay There are two types of spread spectrum that have been approved for use. This article analyzes the approach in to determining performance comparison of Frequency Hopping and Direct Sequence Spread Spectrum Systems in the 2.4 GHz range. The analyses till present show that up to 13 collocated FH networks can be placed before network throughput peaks. (A. Carl, S. Harris B. Palm, n.d.). The article further lists in categorizing the advantages and limitations of spread spectrum and the comparisons between the Frequency Performance and Direct Sequence. The article details itself via valid resources obtained from researched websites and journals with more details available with those references being provided. The Spread-spectrum is or are a series of techniques which are methods by which a signal that could be of electrical or electromagnetic or acoustic signals that are being generated in an exacting bandwidth which is then by design spread in the frequency domain, ensuing in a signal with a vast or wider bandwidth. These techniques are utilized for a range of reasons, together with the establishment of safe and sound communications, increasing resistance to natural interference and congestions, to prevent uncovering, and to frontier power flux density. Out of many Spread Spectrums, this report analyses the two main spread spectrum systems which are the Frequency Hopping and Direct Sequence and in addition an overview of the Chirp Spread Spectrum. Spread Spectrum technologies The spread spectrum technology is more of a technique in which a telecommunication signal is transmitted on a bandwidth significantly bigger than the regularity content of the original information. Spread-spectrum telecommunications is a signal structuring technique that employs direct sequence, frequency hopping, or a hybrid of these, which can be used for multiple access and/or multiple functions.(Anonymous, 2007). This technique reduces the possible intrusion to other receivers while achieving privacy. Spread spectrum in general makes use of a chronological noise-like signal formation to spread the normally narrowband information signal over a comparatively wideband (radio) band of frequencies. The receiver correlates the received signals to retrieve the original information signal. Initially there were two motivations: either to resist enemy efforts to jam the communications known as an Anti-Jam or to conceal the fact that communication was even taking place, sometimes called low probability of intercept. Spread-spectrum clock signal generation The Spread-spectrum clock generation is used in some synchronous digital systems, especially those containing microprocessors, to cancel of the spectral density of the electromagnetic interference that these systems generate. A synchronous digital system is one that is driven by a clock signal and because of its periodic nature, has an unavoidably narrow frequency spectrum. (Anonymous, 2007). In fact, a perfect clock signal would have all its power determined at a single frequency and its harmonics, and would therefore radiate energy with an inestimable spectral concentration. Practical synchronous digital systems radiate electromagnetic force on a number of narrow bands spread on the clock frequency and its harmonics, follow-on in a frequency spectrum that, at certain frequencies, can exceed the regulatory limits for electromagnetic interference The Spread Spectrum Systems Overview Frequency Hopping Spread Spectrum This is a method of transmitting radio signals by speedily switching a mover among many frequency channels, using a pseudorandom cycle known to both transmitter and receiver. It is utilized as a several access method in the frequency-hopping code division multiple access scheme. The three main advantages over a fixed-frequency transmission: -Its signals are highly resistant to narrowband intervention. The procedure of re-collecting a spread signal spreads out the interfering signal, causing it to retreat into the background. -Spread-spectrum signals are tricky to interrupt. A Frequency Hopping Spread Spectrum signal plainly appears as a boost in the background noise to a narrowband receiver. An eavesdropper would only be able to seize the transmission if the pseudorandom sequence was known. -The Spread-spectrum transmissions can contribute to a frequency band with many types of conventional transmissions with minimum interference. The spread-spectrum signals affix minimal noise to the narrow-frequency communications, and vice versa. As an effect, bandwidth can be utilized more resourcefully. The Basic algorithm The initiation of a Frequency Hopping Spread Spectrum (FHSS) communication is as follows: -The initiating party sends a request via a predefined frequency or control channel. -The receiving party sends a number, known as a seed. -The initiating party uses the number as a variable in a predefined algorithm, which calculates the sequence of frequencies that must be used. Most often the period of the frequency change is predefined, as to allow a single base station to serve multiple connections. -The initiating party sends a synchronization signal via the first frequency in the calculated sequence, thus acknowledging to the receiving party it has correctly calculated the sequence. -The communication begins, and both the receiving and the sending party change their frequencies along the calculated order, starting at the same point in time. Technical considerations The overall bandwidth necessary for frequency hopping is a great deal, wider than that required to transmit the same information using only one carrier frequency. Nevertheless, because transmission occurs only on a small segment of this bandwidth at any given time, the effectual interference bandwidth is actually the same. Even as providing no extra protection against wideband thermal noise, the frequency-hopping approach does reduce the deprivation caused by narrowband interferers. One of the challenges of frequency-hopping systems is to coordinate the transmitter and receiver. One approach is to have an assurance that the transmitter will use all the channels in a set period of time. The receiver can then discover the transmitter by picking a random channel and listening for suitable data on that channel. The transmitters data is recognized by a unique series of data that is unlikely to occur over the section of data for this channel and the segment can have a checksum for reliability and further detection. The transmitter and receiver can use fixed tables of channel sequences so that once synchronized they can maintain communication by following the table. On each channel segment, the transmitter can send its current position in the table. Direct Sequence Spread Spectrum Direct-sequence spread spectrum (DSSS) is a modulation method. As with other spread spectrum technologies, the transmitted signal takes up more bandwidth than the information signal that is being modulated. In this technology the transmissions multiply the data being transmitted by a noise signal. This noise signal is a pseudorandom sequence of 1 and à ¢Ãâ ââ¬â¢1 values, at a frequency much higher than that of the original signal, thereby spreading the energy of the original signal into a much wider band. (W. Jimmy, n.d.) The resultant signal resembles white noise, like an audio recording of static. On the other hand, this noise-like signal can be used to precisely recreate the original data at the receiving ending, by multiplying it by the same pseudorandom sequence. This process, known as de-spreading, mathematically constitutes a correlation of the transmitted PN sequence with the PN sequence that the receiver believes the spreader is using. For de-spreading to operate correctly, the transmit and receive sequences must be synchronized. This requires the receiver to coordinate its sequence with the transmitters sequence via some sort of timing search process. However, this noticeable drawback can be a significant benefit: if the sequences of multiple transmitters are synchronized with each other, the relative synchronizations the receiver must make between them can be used to resolve relative timing, which, in turn, can be used to compute the receivers point if the transmitters positions are known. This is the base for many satellite direction-finding systems. The resultant outcome of enhancing signal to noise ratio on the channel is called process gain. Benefits in Direct Sequence Spread Spectrum -It is resistant to planned or unintentional jamming. -The sharing of a single channel between numerous users. -Reduced signal/background-noise level hampers interception (stealth). -Determination of relative timing between transmitter and receiver. Chirp Spread Spectrum On the other hand, the Chirp spread spectrum (CSS) is a spread spectrum technique that uses wideband linear frequency modulated chirp pulses to encode information. A chirp is a sinusoidal signal whose frequency increases or decreases over a certain amount of time. (W. Jimmy, n.d.) Chirp Spread Spectrum is ideal for applications requiring low power usage and needing relatively low amounts of data rate. CSS uses its entire owed bandwidth to televise a signal, building it robust to channel noise. Further, because the chirps utilize a broad band of the spectrum, Chirp Spread Spectrum is also challenging to multi-path fading even when working at very low power. However, it is not like direct-sequence spread spectrum or frequency-hopping spread spectrum in that it does not add any pseudo-random elements to the signal to help differentiate it from noise on the channel, instead relying on the linear nature of the chirp pulse. Moreover, Chirp Spread Spectrum is resistant to the Doppler Effect, which is typical in mobile radio applications. Comparisons against Performance between Frequency Hopping and Direct Sequence Spread Spectrum Systems A Simulated Model/Design Conclusion
Wednesday, September 4, 2019
Japanese Internment (Diary) :: essays research papers
My name is Makino Toshio and I am a second generation Japanese-American. My father moved to Hawaii before coming to the mainland, like most Japanese-Americans. Before World War II, I worked on a Japanese truck farm. When Japan attacked Pearl Harbor, tension was bad for any Japanese-American in the United States. Many people in the United States did not trust people with Japanese ancestry. A store that I usually shop at had a sign in the window saying, ââ¬Å"We donââ¬â¢t want any Japs back here-EVER! Within hours after the bombing of Pearl Harbor at Hawaii, FBI agents went house to house and rounded up 1,212 Japanese in the U.S. mainland and Hawaii islands. Most of the arrests were prominent leaders in Japanese communities. All of them were taken to unknown destinations and treated as Prisoners of War. Even Japanese-Americans who were born in this country were mistakenly thought to be loyal to Japan. There were a lot of rumors that Japanese Americans were helping Japan by using special codes to make contact with them. There is no evidence that Japanese Americans were spying for Japan. Inspite of the fact that there was absolutely no proof that Japanese Americans were disloyal to America, the federal government and its leaders decided that no one of Japanese ancestry could live in the west coast of the United States. On the morning of February 19, 142, President Franklin D. Roosevelt issued Executive Order 9066, which began this prohibition. News came to use that we were going to have to move to internment camps. We had a couple months to prepare to go to the internment camps. Some people in other areas only had a couple of days. We learned about the Relocation Centers through posters that had been posted and from talking to other people. The United States called it a Relocation Center so it didnââ¬â¢t sound as harsh as internment camp. Other than that we heard nothing and had no idea what to expect. We had to report to Tulare Relocation Center. We had no idea how long we were going to be at the center. Later, when the relocation camps were built, we were taken by troop trains to Gila Relocation Center in Arizona. I got work at the camp post office which handled more than a half million dollars in stamps. It was an 8-5 job and, in between, I did what I could to have fun like go to dances or the movies.
Tuesday, September 3, 2019
Insanity Defense Essays -- Law
In 1997, Jesse Ernst and his older brother Ted went on a crime spree throughout the Bigfork area. The brothers burglarized several homes that year, and in one instance killed a neighbor when he attempted to intervene. Both brothers were sentenced to life in prison, however in an appeal Jesse was found not guilty because of mental disease or defect. Instead of spending life in prison, he was released from a mental hospital after only one year of treatment and is now ââ¬Å"working, planning to become a missionary, and ââ¬Ëdoing very wellââ¬â¢ according to his lawyer, Phyllis Quatmanâ⬠(Sabol). Jesse Ernstââ¬â¢s case is a perfect example of the problems with the insanity defense plea today. Although there are a few cases in which this plea is very relevant, for the most part it is a plea used for defendants to escape full punishment for their crimes, and major changes need to be made. In order to understand the complexities of this issue, we first need to understand the basic concepts of the insanity defense plea. According to Kimberly Collins, ââ¬Å"An insanity defense is based on the theory that most people can choose to follow the law; but a few select persons cannot be held accountable because mental disease or disability deprives them of the ability to make a rational / voluntary choice. Such individuals need special treatment as opposed to prison; punishment is not likely to deter future antisocial conduct of these mentally diseased individualsâ⬠(Collins). It goes along with the idea that people should only be held accountable if they are aware of the wrongness of their actions, and that confinement of people who are unaware of their actions is inhumane (Schaefer). The problem with this is that it is hard for people to objectively decide that som... ....Marcus, David K. "The Effects Of Neuroimaging And Brain Injury On Insanity Defenses." Behavioral Sciences & The Law 26.1 (2008): 85-97. Psychology and Behavioral Sciences Collection. Web. 8 May 2012. Sabol, Chery. "Ernst Verdict Makes History." The Daily Interlake [Kalispell] 21 May 2001: unknown. Print. Schaefer, Michele N. , and Joseph D. Bloom. "The Use of the Insanity Defense as a Jail Diversion Mechanism for Mentally Ill Persons Charged With Misdemeanors ." Journal of the American Academy of Psychiatry and the Law Online. The American Academy of Psychiatry and the Law, 1 Mar. 2005. Web. 7 May 2012. . Torry, Zachary D. and Billick, Stephen B. "Overlapping Universe: Understanding Legal Insanity And Psychosis." Psychiatric Quarterly 81.3 (2010): 253-262. Psychology and Behavioral Sciences Collection. Web. 8 May 2012.
Monday, September 2, 2019
waves :: essays research papers
INERNATIONAL BACCALAUREATE SUBSIDIARY LEVEL WAVES SUMMARY 4.1 Travelling wave characteristics A medium is a material through which a wave passes. When a wave passes, each part of the medium moves away from its normal position and then returns. This is called an oscillation. Oscillations within the medium are slight movements either side of the normal position. The wave motion is the disturbance that passes through the medium. A wave pulse causes the medium to have one oscillation. A continuous travelling wave causes the medium to keep oscillating. Waves transfer energy without transporting matter because each part of the medium oscillates on the spot. A transverse pulse causes the spring to move at right angles to the direction of motion of the pulse. A longitudinal pulse causes the spring to move parallel to the direction of motion of the pulse. The direction of propagation is at right angles to the wavefront. The displacement at a point is how much the medium has been displaced from its normal position. Displacements are given + or - signs depending on the direction of the displacement. Amplitude is the largest distance from the normal position that the medium is displaced. The wavelength l of a wave is the distance from one point to the next corresponding point. The period T of a wave is the time in seconds that it takes one wavelength to pass by. In this time the medium will complete one oscillation. The frequency f of the wave is the number of wavelengths that pass each second. Frequency and period are reciprocals. T = 1/f. The speed of a wave is equal to its frequency times its wavelength. A displacement/position graph shows the displacement of the different sections of a medium. A displacement/time graph shows the displacement of one point of a medium as time elapses. The speed of the particles of a medium is a maximum when their displacement is zero. The speed of the particles of a medium is zero where the medium has maximum displacement. For a longitudinal wave, the medium has a high pressure called a compression where particles are closer than normal. For a longitudinal wave, the medium has a low pressure called a rarefaction where particles are further apart than normal. The particles around a compression move in the same direction as the wave. The particles around a rarefaction move in the opposite direction to the wave. The particles near a compression and rarefaction have small displacements. The particles where the pressure is normal, have large displacements.
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