Monday, September 23, 2019
Use of ict Essay Example | Topics and Well Written Essays - 1250 words
Use of ict - Essay Example Positive ICT investments and policies are undoubtedly beneficial to HEIs, even if ICTs have not managed adequately to replace classroom-based instructing models. Generally, ICTs offer effective access for various target learners besides academically termed as vehicles meant for enhanced pedagogical experiences. This is especially to distance learners whose separation between them and their respective HEIs id due to space as well as time (Surry, Stefurak & Gray, 2011, p.45). In most HEIs, some of the major ICT facilities used include, Together with the ever-rampant utilization of ICTs in basic education, most students get to campus with higher hopes in terms of technology uses and corresponding pedagogies. The gaps that exist between higher educational practices and student social media abilities are likely to broaden unless respective administrators ensure educational practices that bring about adequate reforms. Generally, from a pedagogical outlook, network technology such as social media tools avails greater potentials for both collaborative and interactive learning. Tools that employ networking knowhow avail students with an open as well as an innovative development platform (Surry, Stefurak & Gray, 2011). In addition, it also avails an opportunity for aiding collaborative and interactive ways of learning mainly for those having exceptional needs (Surry, Stefurak & Gray, 2011, p.46). The enhancement of a wireless knowhow such as mobile wireless expertise has ensured generation of a significant level of excitement among academicians and practitioners. Reason being, it leads to a shift in the academic environment from out-dated settings to mobile learning (m-learning) settings (Ehlers & Schneckenberg, 2010, p.14). Certainly, augmenting numbers of HEIs provide courses using wireless technology (for example, m-learning) as an substitute to learning and teaching tools. However, despite such interests in
Sunday, September 22, 2019
Nuclear Weapons should be Extirpate Essay Example for Free
Nuclear Weapons should be Extirpate Essay Nuclear weapons are considered serious threats to the human race and have made the world an insecure residence for living organisms. Nuclear weapons are destructive weapons that obtain its force from nuclear fission and nuclear fusion reaction. Both are theses producers are very harmful for the living organism. Nuclear weapons were first conducted in world war2 on Nagasaki and Hiroshima in Japan. It killed approximately 70,000 died immediately from the explosion and another 70,000 died from radiation within five years. The killing included the women and children. All nuclear weapons must be abolished around the world for making world secure, and save budget money. The entire world will be more secure if the planet will free of the nuclear weapons. Nuclear weapons are the only type of weapons in existence that have the capacity to annihilate the human species and countless other species. The reactions of the nuclear weapons live alive after many years of its used. The best example is Nagasaki and Hiroshima in Japan. The nuclear bomb was used on these cities during the world war2, but Nagasaki and Hiroshima are still suffering with the reaction of nuclear bomb. Japanese cannot grow any crop in Nagasaki and Hiroshima because the fusion reaction of nuclear bomb is still alive. Without abolition, there is always the danger that nuclear weapons will proliferate, that more and more countries will obtain them. The existence of nuclear weapons leaves open possibility that a nuclear exchange might take place. The nuclear weapons are extra ordinary costly, and the costs continue into the indefinite future. Billions of dollars are wasted each year to pay for nuclear weapons. The cost of research, development, testing, deployment, and maintenance of the nuclear program is very high. Even it becomes higher, when we include the costs of damage to the land, illness of uranium miners,Ã cancer deaths from nuclear pollution, and the storage of nuclear wastage. Since early 1940s the U.S. alone has spent $4 trillion on nuclear arms. If current policies are implemented, the U.S. will continue to spend some $25-30 billion on nuclear forces. What is the more important education or nuclear bombs that can kill the human? Today, Congress and Administration are watching government spending, shrinking and eliminating programs and taking measures to reduce the deficit. Despite this, the central feature of national security spending for the past fifty years, nuclear weapons, has been rarely touched. Possession of nuclear weapon does not mean that the country is powerful. Many developed countries such as, Australia, Germany, and Spain do not have nuclear bomb. Some countries have already given up nuclear weapons, showing that it is possible for a nation to be secure without nuclear bomb. Three former Soviet republics, Belarus, Kazakhstan and Ukraine, became nuclear weapons free states by volunteering transferring their nuclear warheads to Russia after the breakup of the Soviet Union. South Africa actually developed a small nuclear arsenal clandestinely, and then dismantled it. Argentina and Brazil have also eliminated their nuclear weapons programs even though they achieved initial success in these programs. These countries give a massage to the nuclear powers that you can succeed without nuclear bomb. In summary, the above analysis shows that nuclear weapons are weapons of great destruction. Our government wastes over thirty- three billion dollars a year of our tax money. Furthermore, nuclear weapons pose serious health risk to those around them, including the citizen. There has not been a significant impact on world affairs by nuclear weapons since world war2. Having a nuclear bomb does not guarantee the better life of the citizen, and development of the country. For these reasons, the nuclear weapons should be banned in entire world.
Saturday, September 21, 2019
Water Quality Management Issues In DEWA Company Environmental Sciences Essay
Water Quality Management Issues In DEWA Company Environmental Sciences Essay This paper will discuss water quality management issues in a Dubai company called DEWA (Dubai Electricity and Water Authority). This is a governmental organization that is in charge of producing and distributing water and electricity to the whole of the Dubai population. Water quality issues were among the concerns of the third UNEP report on the environment. Gordon (1998:1) notes, The Global Environmental Outlook (GEO-3 report) identified a wide spectrum of existing and emerging water issues that need to be addressed if the world is to achieve sustainable development. One of the general issues in water management is the threat of depletion of groundwater due to the rising demands for land for agriculture and for building urban centres. Majority of communities living near water catchment areas such as forests are depleting rather than preserving them. Hydro-development and geothermal projects are another threat to abundance of water sources and the quality of water because they divert it to uses such as irrigation and generation of electricity. Another concern is the threat to quality of water due to pollution by fertilizers, pesticides and factory chemical emissions. Poor quality of water has a negative effect on human, animal and plant populations, and can occur due to natural or artificial factors. One cause of problems in the quality of water is natural chemicals in the air and ground that enter into contact with water sources and pollute them. Another factor, which is also the largest contributor to poor water quality, is human use of chemicals that pollute water bodies in activities such as farming and industrial production. Sources of water pollution can be fixed, such as manufacturing plants, or mobile, for example, farming activities. The first category has pollutants that are very strong while those of the latter group are mild but are extensive in area of coverage. Moreover, it is easier to estimate and alleviate pollution from the first category than the second because the latter affect a wider region. As Ongley (1999:5) observes, Water quality degradation can pose serious threats to public health, agricultural and industrial production, ecological functions, and biodiversity. Water quality problems can arise from high concentration of naturally occurring elements such as arsenic, fluoride, or selenium. But most water quality problems are caused by the discharge of pollutants from human activities. Pollution sources include point sources-specific points of discharge of high-pollutant concentration-and nonpoint sources-low-concentration sources covering a large area. Point source discharges from sewers, wastewater treatment plants, and factories are visible and can be chemically characterized relatively easily. However, substantial loads of pollutants can also enter water bodies from nonpoint sources, such as fertilizer use for agriculture. In the case of the DEWA Company, poor quality of water is likely to result from emissions from point sources rather than nonpoint ones because the firm undertakes the supply of water to the nation. Consequently, the company has facilities set up to clean water before pumping it to consumers. For example, in 2010 the company set up a facility at Jebel Ali to purify water from salty substances. The chemicals used to desalinate the water and purify it may be a threat to its quality. Another possible threat to the quality of water that the firm supplies is likely to be poor hygiene of the storage tanks, distribution pumps and pipes. If management does not ensure that these facilities are clean, contamination of water is likely to occur. If the storage tanks are left bare, contamination of the water contained therein is likely to occur. Moreover, the residue of chemical substances, especially chlorine, used to clean these facilities is likely to pollute the water when in storage or during distribution. In addition, the company can cause pollution of external water masses through emissions from its water treatment facility. At the same time, since it supplies electricity to consumers, generation of this source of energy can cause gas emissions that pollute not only the air but also the water masses nearby. The World Health Organization has set maximum levels for chemicals present in water, especially for human consumption. World Health Organization (1958: 9) Water intended for human consumption must be free from chemical substances and micro-organisms in amounts which would provide a hazard to health is universally accepted. Supplies of drinking-water should not only be safe and free from dangers to health, but should also be as aesthetically attractive as possible. Absence of turbidity, color and disagreeable or detectable tastes and odors is important in water-supplies intended for domestic use. Fluoride levels should not be lower than 0.5 mg/l as this will contribute to dental decay in the population, especially in children. Nitrates, on the other hand, should not exceed 50 mg/l and 100 mg/l. If bacterial organisms of the coliform type are present, this means that the water has faecal contamination and therefore is not fit for human consumption. Moreover, the water should be free of any taste and smell. The table below presents the acceptable levels in drinking water for other chemical substances. World Health Organization (1958:29) Chemicals affecting portability of water Total solids 500 mg/l 1500 mg/I Colour 5 units 50 units Turbidity 5 units 25 units Taste Unobjectionable Oduor Unobjectionable Iron (Fe) 0.3 mg/l 1.0 mg/l Manganese (Mn) 0.1 mg/l 0.5 mg/l Copper (Cu) 1.0 mg/l l.5 mg/l Zinc (Zn) 5.0 mg/l 15 mg/l Calcium (Ca) 75 mg/l 200 mg/l Magnesium (Mg) 50 mg/l 150 mg/l Sulfate (SO) 200 mg/l 400 mg/l Chloride (Cl) 200 mg/l 600 mg/l pH range 7.0-8.5 à ¢Ã¢â¬ °Ã ¤6.5 or à ¢Ã¢â¬ °Ã ¥ 9.2 Magnesium + sodium sulfate 500 mg/l 1000 mg/l Phenolic substances (as phenol) 0.001 mg/l 0.002 mg/l Burke (2002:1) notes that the main aim of monitoring the quality of water is to ensure its clean and safe supply. Some of the variables to check in order to get an indication of water quality include temperature of the water, alkalinity and acidity, density, amount of salt, gas levels such as oxygen and nitrogen, chemical substances such as nitrate and phosphorous and micro-organisms such as protozoa, among others. One may therefore carry out the process from a physical, chemical or biological perspective or use all of these angles of analysis. However, this process also involves checking the hygiene levels of water bodies in use by many stakeholders and those that offer a habitat for animal and plant populations. Since water is one of the resources in the natural environment, it is susceptible to effects from manufacturing plants that utilize natural resources. These include geothermal plants, quarries where mining takes place and the timber industry that makes use of wood from forests. Monitoring the quality of water therefore involves assessing the impact of such industries on water, water bodies and catchment areas. Another reason for monitoring the quality of water is to check whether a particular type of water mass meets the standards set for it. The standards depend on the use of the water body. These include for water for drinking purposes, leisure, fishing, habitat for wildlife, farming and industrial use. She adds that there exist three main ways of monitoring the quality of water. Burke (2010:1) mentions discrete, mechanical, and automated methods. In the first instance, which is the old way of monitoring water quality, one measures a single aspect. This is done either in the field or in a laboratory. This method is tiring and time-consuming. At the same time, it is subject to the operators bias and judgment when collecting the samples as well as when doing the analysis in a laboratory. The second method involves leaving bottles in a water mass for some time to collect water then taking these to a laboratory. This method reduces the manual effort and time spent collecting samples of water. However, it is subject to bias from laboratory analyses and at the same time, leads to loss of time spent waiting for the bottles to collect water. The third method makes use of devices that will sense the aspect of water quality being tested and these in turn store the information. This method is fast and likely to yield more reliable results than the other two as it does not rely on the subjective judgment of the analyst in a laboratory setup. In the monitoring of water quality, screening methods have become more common than other techniques. This is because they are fast and easy to use due to their advanced technology. Gonzalez, Greenwood, Quevauviller (2009:16) note, Screening methods are often chosen by field operators for rapid and simple measurement of water quality. They are also called alternative methods or emerging tools. There are different types of alternative method such as ready-to-use methods (test kit method), handheld devices (handheld instrument with generally no reagent needed), online sensors (generally in an industrial context) and methods for biological monitoring (such as bio markers, whole-organism tests). To improve the process of monitoring water quality, DEWA has integrated an automated system among its management programs. According to DEWA Company (2009:15), 7-Technologies has entered into agreement with our German system integrator, Cegelec, for the supply of an AQUIS real-time water management system to DEWA in the United Arab Emirates. The AQUIS platform supplied includes all the AQUIS modules: Hydraulic, Water Quality, Surge, Load Forecaster, Leak Detection, GIS and SCADA Interface. The real-time system will provide asset and process performance monitoring and give early warnings of potential operational problems. This will improve planning and design, serviceability, water quality and leakage reduction. For this topic, I choose the automated technique of measuring water quality because it is fast and yields more reliable results. This method makes use of devices capable of sensing the variables under consideration. Since the DEWA Company distributes water for human consumption, it has to ensure that it stores and distributes enough water for the population. DEWA Company (2009:3) DEWA has a policy to maintain bulk storage of potable water equivalent to two days of system peak demand. This implies that it has an extensive reservoir and distribution system, which is not possible to monitor manually on a regular basis. Moreover, the stored water is susceptible to residue of chemical substances such as chlorine and this may affect the quality of water the firm distributes for human consumption. The company therefore requires continually monitoring of the quality of the stored water and the automated technique would be the most appropriate. The technology applicable here would be the online sensing devices that would read the chlorine levels in the tanks as well as the input and output pipes. To monitor water quality in the DEWA Company (2009:5), analyzer stations consisting of transmitters and sensor assemblies for measuring pH, residual chlorine, conductivity and temperature may be installed at specified locations as per DEWAs specifications. The quality of the water that DEWA produces is as follows: DUBAI ELECTRICITY WATER AUTHORITY TRANSMISSION DISTRIBUTION: WATER DIVISION OPERATION DEPT. LABORATORY TYPICAL RANGE OF COMPOSITION OF DEWA WATER ELECTRICAL CONDUCTIVITY 250-800 MICROMHOS/CM pH 7.5-8.5 TOTAL DISSOLVED SOLIDS 125.0-400.0 Mg/l CHLORIDE AS CI Mg/l BICARBONATE AS HCO3 50.0-75.0 Mg/l SULPHATE AS SO4 Mg/l NITRATE Mg/l CALCIUM AS Ca 15.0-25.0 Mg/l TOTAL HARDNESS AS CaCO3 50.0-120.0 Mg/l MAGNESIUM AS Mg 2.0-20.0 Mg/l SODIUM AS Na Mg/l FLUORIDE AS F NIL TASTE, COLOUR AND ODOUR UNOBJECTION-ABLE COLIFORM BACTERIA NIL The above table incorporates variables of assessing quality of water from a chemical, physical and biological perspective. From the data, it appears that the DEWA Company produces relatively high quality water. This is because, according to the above table, the water is free from any taste, smell and has no color and is therefore transparent. In addition, it is free from contamination by coliform bacterial organisms, meaning the water has no faecal pollution. However, there is no fluoride present in the water meaning that it is likely to cause dental problems in the consuming population. As the World Health Organization (1958:28-29) notes, If the fluoride concentration in the drinking-water of a community is less than 0.5 mg/l, a high incidence of dental caries is likely to occur. To prevent the development of dental caries in children, a number of communal water-supplies are fluoridated to bring the fluorine concentration to 1.0 mg/l. Moreover, the water is safe for consumption because its nitrate levels do not exceed the World Health Organization directives of 50 mg/l and 100 mg/l. The water pH does not raise concerns since the levels of alkalinity and acidity of the water are within the accepted range. It is therefore possible that there are few land use activities in the areas from which the company sources its water. Consequently, fewer chemical substances such as fertilizers and pesticides wash off into the water sources. In addition, the amount of chloride is also on the lower end of the permissible range, which means that salinity of the water is low. However, the amount of dissolved matter is less than the permissible level therefore the water density is low, but on the other hand, this means that the salinity levels are low. The magnesium, calcium and sulphate contents are also lower than the acceptable minimum, which means that though the water lacks essential components, it has low salinity levels. According to the above table, the water from the DEWA Company is relatively good for consumption because it does not contain toxic substances such as lead or cyanide. The presence of nitrates in the water that the firm supplies is likely to be due to the discharge of treated sewage water while that of sodium is due to the use of this compound to clear chlorine residue. On the other hand, the absence of fluoride in the water may be due to changes in climate in the areas where the company sources its water. The high potential of the water to conduct electricity may be due to the presence of radioactive matter. This is also evident in the presence of hydrocarbons in the water. The salinity of the water is low meaning that there is a higher amount of freshwater than salty water entering into contact with the sources of the DEWA water. Since the amount of dissolved solids in the water is less than 1000mg/l, it appears then that the DEWA water is fresh. It appears that the water is soft because the levels of magnesium and calcium are low. Moreover, the amount of solids dissolved in the water is low indicating that the saline content is also low. According to Statgraphics (2006:1), An important technique used to determine how well a process meets a set of specification limits is called a process capability analysis. A capability analysis is based on a sample of data taken from a process and usually produces: an estimate of the DPMO (defects per million opportunities), one or more capability indices and an estimate of the Sigma Quality Level at which the process operates. From the above table, it appears that the water quality management process at the DEWA Company is capable of meeting the needs of the population. In addition, it appears that the company is capable of providing good quality water for human consumption to its consumers. The strengths of the system include its ability to lower the saline content and the amount of dissolved solids therefore producing water that is fresh. Furthermore, the water does not contain toxic substances such as cyanide, lead, among others, and this implies that it is fit for human consumption. Moreover, there is a balance between the water acid and alkaline levels as the pH is within the acceptable range. The nitrate levels are also within the acceptable range and therefore do not pose a threat to human health. In addition, the water is soft rather than hard due to reduction of magnesium and calcium elements. Another strong point is that the management system has preserved the waters aesthetic quality since there is no odor, color and taste present. Moreover, the water is free from faecal pollution as there is no contamination by bacterial organisms of the coliform nature. According to DEWA Company (2009:7), DEWAs water system consists of a transmission network where pipe diameters range from 550 mm to 1200 mm, and distribution network where pipe diameters range from 100 mm to 450 mm. This means that the company is able to transmit and distribute large amounts of water at any given time due to the large capacity and volume of its transmission system. On the other hand, the water production system has fewer defects than the strengths listed above. The defects include production of water with no fluoride element, which can lead to tooth decay. In addition, the electrical conductivity of the water is very high indicating the possibility of contamination with radioactive matter. However, the strengths of the system of water production outweigh its weaknesses. The indicators of the systems capability to produce good quality water are the variables that the company uses to measure the quality of water. These include lack of taste, smell, color, coliform bacterial organisms that are indicative of faecal pollution, few nitrate, calcium and magnesium contents that are an indication of low salinity levels, normal alkaline and acidity levels, a low amount of dissolved solids and the absence of poisonous substances such as lead and cyanide. In conclusion, it appears then that the company is capable of producing good quality water for the con suming population. Consequently, we can also say that the management system of the DEWA Company in relation to the production and supply of water is one that is effective in terms of ensuring good quality water.
Friday, September 20, 2019
Posture Recognition Based Fall Detection System
Posture Recognition Based Fall Detection System A POSTURE RECOGNITION BASED FALL DETECTION SYSTEM FOR MONITORING AN ELDERLY PERSON IN A SMART HOME ENVIRONMENT ABSTRACT The mobile application is capable of detecting possible falls for elderly, through the use of special sensors. The alert messages contain useful information about the people in danger, such as his/her geo location and also corresponding directions on a map. In occasions of false alerts, the supervised person is given the ability to estimate the value of importance of a possible alert and to stop it before being transmitted. This paper describes system for monitoring and fall detection of ELDERLY PEOPLE using triaxial accelerometer together with ZigBee transceiver to detect fall of ELDERLY PEOPLE. The system is composed of data acquisition, fall detection and database for analysis. Triaxial accelerometer is used for human position tracking and fall detection. The system is capable of monitoring ELDERLY PEOPLE in real time and on the basis of results another important parameters of patient can be deducted: the quality of therapy, the time spent on different activities, the joint moveme nt, etc. The system, including calibration of accelerometers and measurement is explained in detail. The Accidental Fall Detection System will be able to assist carriers as well as the elderly, as the carriers will be notified immediately to the intended person. This fall detection system is designed to detect the accidental fall of the elderly and alert the carriers or their loved ones via Smart-Messaging Services (SMS) immediately. This fall detection is created using microcontroller technology as the heart of the system, the accelerometer as to detect the sudden movement or fall and the Global System for Mobile (GSM) modem, to send out SMS to the receiver. INTRODUCTION The leading health problems in the elderly community. They can occur in home as well as in hospitals or in the long-term care institutions [1]. Falls increase risk for serious injuries, chronic pain, long-term disability, and loss of independence, psychological and social limitations due to institutionalization. Nearly 50% of older adults hospitalized for fall- related injuries are discharged to nursing homes or long-term care facilities [2]. A fall can cause psychological damage even if the person did not suffer a physical injury. Those who fall often experience decrease activities of daily living and self-care due to fear of falling again. This behavior decreases their mobility, balance and fitness and leads to reduced social interactions and increased depression. The mortality rate for falls increases progressively with age. Falls caused 57% of deaths due to injuries among females and 36% of deaths among males, age 65 and older [3]. Majority of falls result from an interaction between multiple long-term and short-term factors in personââ¬â¢s environment [4]. Common risk factors include problems with balance and stability, arthritis, muscle weakness, multiple medications therapy, depressive symptoms, cardiac disorders, stroke, impairment in cognition and vision Detection of a fall possibly leading to injury in timely manner is crucial for providing adequate medical response and care. Present fall detection systems can be categorized [7, 8, 9] under one of the following groups: User activated alarm systems (wireless tags), Floor vibration-based fall detection, Wearable sensors (contact sensors and switches, sensors for heart rate and temperature, accelerometers and gyroscopes ), Acoustic fall detection, Visual fall detection. The most common method for fall detection is using a triaxial accelerometers or bi-axial gyroscopes. Accelerometer is a device for measuring acceleration, but is also used to detect free fall and shock, movement, speed and vibration. Using the threshold algorithms while measuring changes in acceleration in each direction, it is possible do detect falls with very high accuracy. Using two or more tri-axial accelerometers and combining them with gyroscopes at different body locations it is possible to recognize several kinds of postures (sitting, standing, etc.) and movements, thereby detecting falls with much better accuracy. An easy and simple method to detect fall detection of ELDERLY PEOPLE is using accelerometer together with ZigBee transceiver to communicate with Monitoring System through wireless network, and in this paper a system for monitoring and fall detection of ELDERLY PEOPLE using mobile MEMS accelerometers will be presented. . The first three functions provide recording in a database, and also a text message is sent to the supervisor with latitude, longitude and other useful data. Afterwards, you can detect the elder person through Google maps. Additionally, an application was implemented for the attending physician, which is connected with the database, through which s/he can obtain a complete picture of the patientsââ¬â¢ status, to draw useful conclusions and proceed to possible change in medical treatment. EXISTING SYSTEM: An application for Apple IOS by using an accelerometer to detect falls. A possible drawback is that the development platform Apple IOS is not accessible to the average user. An application in Symbian s60 using machine learning algorithm takes 64 samples every two seconds from the accelerometer and decides whether there is a fall. PROPOSED SYSTEM: In this paper, we designed an application with the ability of automatic fall detection, by using the mobile sensors, warning signal by pressing a button in cases of emergency, detection and automatic notification to supervisors as well as visual display to passerbies. The application uses basically two incorporated mobile sensors, namely the accelerometer and the gyroscope sensor.A counter starts counting loudly on the screen from 30 to 0. If the counter reaches 0, then an SMS message is sent to the caregiver or relative and an entry is made to the Database. The first service detects the patientââ¬â¢s position and calculates whether the patient is further away than a set distance. When activated can give directions to the patient what route to follow to return back to home. APPLICATIONS: Automatic fall detection. Warning if the elder moves away from the place of residence directions given on the map. ADVANTAGES: Elderââ¬â¢s safety can be assured. Fast First aid or medical treatment can be guaranteed. DISADVANTAGES: Device Sensor should be carried out whenever the person moves over. SYSTEM DESIGN Architecture Diagram SYSTEM FOR MONITORING AND FALL DETECTION The whole system consists of a set of sensors (two or more sensors on the patient, usually MEMS sensors) which the patient wears on himself, local units to collect data that are placed in patient vicinity and systems for collecting. The tiny sensors in the strap are capable of measuring user orientation and motion in three-dimensions and it is constantly monitoring and analyzing the signals in real-time looking for movement indicating a fall. From the comparison Table Error! No text of specified style in document. .1, it shows that the system maybe a hindrance to the consumer in terms of price over the years. The aim of this project is to be able to provide equal standard of care at an affordable cost. The system is shown in Figure 1 the space is divided into sections which are defined by interior and exterior of the institution in which a system is operated. Each room is stocked with local receivers. Local receivers collect data from sensors that the ELDERLY PEOPLE are wearing on the clothes. The sensors are small and lightweight. One sensor is located in the upper garment and the other at the bottom. This is not limited to two sensors, if necessary, there may be more, but for the detection of falls to the back the system must have at least 2 sensors Local receivers pass information to the server. The server information is processed local health care service. Personal computers are used to browse the database collected a t the server. The database contains information about the mobility of ELDERLY PEOPLE, treatment efficacy, joints. All these data can be analyzed offline and used to adjust patient therapy. This has served a double function of the system Real-time patient monitoring and early detection of the fall in order to deliver medical assistance as soon as possible. In this application Free scale TM ZSTAR wireless sensing triple axis board is used (Fig. 2). It is very practical because of low power consumption, portability, and the ability to be mounted in small pockets inside the clothes of ELDERLY PEOPLE. Board is divided into sensory and receiver part. The sensor is placed at the patient and is equipped with an accelerometer, microprocessor, and transceiver with the antenna which sends the measurement data to the receiver. The receiver also has a microprocessor that adjusts the signals received through the antenna to send with the USB protocol. These data are sent to the server. The server collects process and stores the data. Each sensor that is connected to the patient is personalized, and its data are stored in a file under persons name to get an overview of all activities and physical stress of the patient FALL DETECTION USING TWO ACCELEROMETERS In this chapter the operation of the system through one of its functions and to the detection of fall will be described. The figures have been simplified for better understanding of the system. The algorithm used is improved algorithm given in, with better detection of backwards falls. Setup for accelerometer fall detection, consists of the measuring sensors with transmitter, receiver and server for data processing and fall detection. The fall is detected by the algorithm described in. It can be seen that fall detection algorithm uses data from both sensors that are monitored at the same time. This algorithm is able to distinguish between falls (forward, back word fall into a sitting position) and the normal daily activity, such as walking, mastering stairs, sitting in a chair, lying walking is also detecting by the sensors. However, these impacts are not isolated, and after them there is no significant change in orientation between the two sensors. Vectors are in the area that will call common zone .if an isolated stoke which causes a change in orientation of the body is detected, or the orientation of certain body parts in relation to the situation before the stroke, then with some certainty it can be said that the fall had occurred. Dataflow Diagram SYSTEM IMPLEMENTATION Modules details Phase 1 Modules Fall Detection Location Tracking Phase 2 Modules Communication Route Map Integration Fall Detection: The FALL DETECTION is something that we have developed at Alert1 so you can be safe at all times. Whether you are a senior citizen and want to maintain your independence, a concerned family member looking for peace of mind, or a caregiver with patients, this tool has been developed for you. Prevention is key. Use it to inspect and detect hazardous areas in your home that could result in a fall. If you answer no to the questions, you have already taken action to reduce your risk of falling. If you answer yes to any of the questions, consider making the recommended change or adaptation to reduce your risk of falling. Location Tracking: Real-time locating systems (RTLS)are used to automatically identify and track the location of objects or people in real time, usually within a building or other contained area. Wireless RTLS tags are attached to objects or worn by people, and in most RTLS, fixed reference points receive wireless signals from tags to determine their location. The physical layer of RTLS technology is usually some form ofradio frequency(RF) communication, but some systems use optical (usuallyinfrared) or acoustic (usuallyultrasound) technology instead of or in addition to RF. Tags and fixed reference points can be transmitters, receivers, or both, resulting in numerous possible technology combinations. RTLS are a form oflocal positioning system, and do not usually refer to GPS,mobile phone tracking, or systems that use only passiveRFIDtracking. Location information usually does not include speed, direction, or spatial orientation. Communication: The table that maintained the mapping between the agentââ¬â¢s name and the landmark location is shared and updated by the agents who were on nodes within the landmarkââ¬â¢s coverage. When the node is not a landmark node, the table is used as a cache table. If communication with the other agent succeeds, the locations and the agent names are registered in this cache table. It is possible for the agent to periodically get the location of the target agent and store it in the cache table. The use of a cache table enables agents to initiate direct communication with each other and reduce the communication overhead to landmarks. When the cache misses, the agent sends a request to the landmark to get updated information. Agents can also delete the information from the cache table. The communication between landmarks is implemented, however we only use this communication to call the target agent when there is no target agent within the coverage area. This primitive is used when the pro grammer deploys agents and makes deployment of agents easy. Routemap Integration: The integration of spatial maps in mobile was investigated using a spatial analog to sensory preconditioning. The GPS chip outputs the positioning information which is transferred over a GPRS link to the mobile operatorââ¬â¢s GGSN (Gateway GPRS Support Node) and then to a remote server over a TCP connection. The TCP server stores the incoming positional data in a mySQL database. When a user clicks on the tracking page., Zope, which is an open source web application server, serves up an HTML page with an embedded javascript code. The javascript would run in the users browser and has instructions to retrieve the positional information from the mySQL database every second. It then integrates this information into Google Maps through Google Maps API which displays the position on a map. Since the positional information is retrieved every second and the maps updated at the same frequency, a real time GPS tracking effect is achieved. CONCLUSION Triaxial accelerometers can be used for detecting fall of ELDERLY PEOPLE. They offer low cost solution, and together with wireless connectivity solutions such as ZigBee provide efficient solution for both ELDERLY PEOPLE and medical personnel l. In this paper I have presented an intelligent mobile multimedia application that can be incorporated into modern mobile smartphones in order to be used for the needs of the elderly. It is in our future plans to evaluate this system in order to test its efficiency in actually helping these people sufficiently. It is also in our future plans to extend the systemââ¬â¢s capabilities by incorporating new services. These services include the following: Embed a belt measuring heart rate as an external sensor Integrate a gyroscope sensor instead of an orientation sensor, for more accurate results Integration of social networks to alert senders Integrate public agency to alert senders Add a system administrator feature. References: A. Chan and N. Vasconcelos, ââ¬Å"Counting people with low-level features and Bayesian regression,â⬠IEEE Trans. Image Process., vol. 21, no. 4, pp. 2160ââ¬â2177, Apr. 2012. E.Auvinet, F. Multon, A. Saint-Arnaud, J. Rousseau, and J. Meunier, ââ¬Å"Fall detection with multiple cameras: An occlusion-resistant method based on 3-d silhouette vertical distribution,â⬠IEEE Trans. Inf. Technol. Biomed., vol. 15, no. 2, pp. 290ââ¬â300, Mar. 2011. Y. Hou and G. Pang, ââ¬Å"People counting and human detection in a challenging situation,â⬠IEEE Trans. Syst. Man, Cybern. Part A: Syst. Humans, vol. 41, no. 1, pp. 24ââ¬â33, Jan. 2011 Y. Chen, L. Zhu, A. Yuille, and H. Zhang, ââ¬Å"Unsupervised learning of probabilistic object models (POMs) for object classification, segmentation, and recognition using knowledge propagation,â⬠IEEE Trans. PatternAnal. Mach. Intell., vol. 31, no. 10, pp. 1747ââ¬â1761, Oct. 2009 F. Lecumberry, A. Pardo, and G. Sapiro, ââ¬Å"Simultaneous object classification and segmentation with high-order multiple shape models,â⬠IEEETrans. Image Process., vol. 19, no. 3, pp. 625ââ¬â635, Mar. 2010
Thursday, September 19, 2019
The Division of Church and Teensââ¬Â¦ Essay -- Essays Papers
The Division of Church and Teensâ⬠¦ It seems in todayââ¬â¢s world every night on the news we see examples of high school aged Americans who are committing crimes and hurting people around them. Whether it is a school shooting, kids being busted for drugs, underage drinking, or vandalism we are seeing more examples of high school aged kids doing things that are severely looked down upon. This problem has not been resolved because we keep seeing it as a continuing issue in the news everyday. With the cutting of extracurricular budgets for schools and other organizations the availability of good programs for high school kids to participate in is declining year by year. Therefore many kids are spending their time doing unconstructive things that may lead to ill-advised behavior. Although there are thousands of explanations for this irrational behavior ranging from violence on TV to the availability of guns, a significant reason is a lack of spiritual values associated with religion and the church. However, to und erstand this reason you must recognize that by referring to spirituality and the church I am encompassing all religions. Nevertheless due to the restrictions on the length of this paper I will use specific examples and not be able to fully explore every religion. Furthermore I will be focusing in general on specific examples occurring in America because they relate better to this essays projected audience. In addition, by asserting my above statement I am also implying that all religions have ââ¬Å"goodâ⬠values and that these values are a possible solution to this increasing problem. In general this is a true statement because I believe all of the larger more populous religions reinforce stability and a given set of values ... ...assertion is contradictory to my argument because I am implying that they are related. - ââ¬Å"Religion, parental input protect from effects of violenceâ⬠. Academic Search Premier. December 10, 2003. Biotech Week. 24 February, 2004. . This article talks about how religious beliefs help to keep kids out of conduct trouble and relates to my argument because it supports my claim about teenagers avoiding bad behavior by embracing religious values. - ââ¬Å"Town to bury first shooting victim as police pursue third suspectâ⬠. CNN.com. April 24, 1999. Cable News Network. February 24, 2004. http://www.cnn.com/US/9904/24/school.shooting.01/index.html> Relates facts about the Columbine shootings in which a mother supports my argument that high school students need to be more devoted toward religion.
Wednesday, September 18, 2019
Interview Essays - A Local Rock Star -- Interview Essays - A Local Roc
Local Rock Star Sitting at the table with long, thick, blonde hair and a hint of Brad Pittââ¬â¢s facial features sits Brian. He is a 17 year old high school junior, a guitarist in a local band, and he is my interview. He will begin nearly all his sentences with ââ¬Å"uhhâ⬠¦Ã¢â¬ but then proceeds to long, interesting answers. I started by asking him about when he became interested in music, and who his influences were. ââ¬Å"Iââ¬â¢ve always listened to music,â⬠he said, ââ¬Å"my first album ever was Nirvanaââ¬â¢s Nevermind; it was a cassette tape. I also listened to a lot of Michael Jacksonââ¬âdonââ¬â¢t laugh, I mean like Thriller and stuff.â⬠What inspired you to play an instrument? ââ¬Å"The Red Hot Chili Peppersââ¬â¢ CD Blood, Sugar, Sex, Magic was the first time I realized I wanted to play an instrument.â⬠What instruments do you play? ââ¬Å"Iââ¬â¢ve played guitar for the last four years, saxophone for the last twoââ¬âthough only in the school band,â⬠he said. ââ¬Å"The keyboard, bass and drums I can ââ¬Ëmusically understand,ââ¬â¢ though I donââ¬â¢t usually play them.â⬠So tell me about the band. Whatââ¬â¢s the significance of the bandââ¬â¢s name, No Name Charlies? ââ¬Å"Uhhâ⬠¦ well we had, like, 100 names that we had gone through and we didnââ¬â¢t really like. Then Greg, our former trombone player, said that whenever his teacher in elementary school would get an essay without a name on it, sheââ¬â¢d call it a ââ¬Ëno name Charlie.ââ¬â¢ We all kind of liked it; itââ¬â¢s definitely grown on us since then.â⬠He told me the band came together in November 2001, and their first show was in spring 2002. There has been a lot of movement in terms of the band members: some have come and gone, some have come, gone and come back again, some switch instruments, and others have stepped in. The configuration, as i... ...ur first one,â⬠he says, referring to their 2003 demo Shut Up and Listen! They met Pat Kays, bassist for the band Catch 22, when they opened for his band last year. Kays told the boys he liked their sound, and was interested in engineering and, to an extent, producing. ââ¬Å"It was mutual,â⬠Brian said, ââ¬Å"because we had been wanting to record, and he had wanted to engineer. It all kind of fell into place.â⬠Youthful endurance, continuing optimism and a smallââ¬âbut steadily growingââ¬âfan base have all contributed to the No Name Charliesââ¬â¢ local success. When asked whether the band would take the chance to become famousââ¬âif the chance was givenââ¬âBrian said they would take it without question. However, he thinks balance is important, and would not sacrifice a college education for it. When asked if he thinks the band will make it big, Brian replied, ââ¬Å"Iââ¬â¢d like to think so.ââ¬
Tuesday, September 17, 2019
The Mist Countries
THE THE MIST COUNTRIES ââ¬â Mexico, Indonesia, South Korea & Turkey: Are MIST countries becoming the new BRICs? : For many investors, Mexico, Indonesia, South Korea and Turkey have taken over from the BRICS becoming the four biggest emerging markets, and growing faster than their major rivals. BRIC inventor Jim Oââ¬â¢Neil from Goldman Sachs proposed the new term MIST term for Mexico, Indonesia, South Korea and Turkey, which are the four biggest markets in the Goldman Sachs N-11 Equity Fund. The MIST economies more than doubled during the last decade, according to Bloomberg, and continue surging despite global economy concerns.Mexicoââ¬â¢s IPC Index has climbed 11% this year, comparing with a 2. 8% growth of Brazilââ¬â¢s Bovespa. Meanwhile Turkeyââ¬â¢s ISE National 100 gained 28 percent, compared to 13% gain of BSE India Sensitive Index and 2. 6% gain in Russiaââ¬â¢s MICEX. Though the MIST nations outperformed the BRIC in pace of growth, its economic output still ca nââ¬â¢t approach the BRIC. Total GDP for the MIST nations was $3. 9 trillion last year, compared to $13. 5 trillion of BRIC economies and $7. 3 trillion for China alone. Comment: If you go to the Wikipedia page about BRIC you will read that Mexico and South Korea tried to become part of BRIC.It was used the name BRIMCâ⬠¦. But it failed because the BRIC were Core-Hubs in their areas (Eurasia, South America, Far East, South East Asia) while the MIST are a second dependent layer around the Hub. In fact, and to be precise there are three World Hubs-Cores: USA, GERMANY (Eurozone) and CHINA. Turkey depends on Europe, Mexico depends on the US, South Korea depends on Chinaâ⬠¦. So, if those hubs are hit, the MIST will be hit MUCH MORE, as we remember from the Bhat crisis. Russia could be an Eurasian and Energy Hub-Coreâ⬠¦. even if still not fully developed, so it is still a layer of the E. U. Hub. Mexico Economy ââ¬â overview:Mexico has a free market economy in the trillio n dollar class. It contains a mixture of modern and outmoded industry and agriculture, increasingly dominated by the private sector. Recent administrations have expanded competition in seaports, railroads, telecommunications, electricity generation, natural gas distribution, and airports. Per capita income is roughly one-third that of the US; income distribution remains highly unequal. Since the implementation of the North American Free Trade Agreement (NAFTA) in 1994, Mexico's share of US imports has increased from 7% to 12%, and its share of Canadian imports has doubled to 5%.Mexico has free trade agreements with over 50 countries including Guatemala, Honduras, El Salvador, the European Free Trade Area, and Japan ââ¬â putting more than 90% of trade under free trade agreements. In 2007, during its first year in office, the Felipe CALDERON administration was able to garner support from the opposition to successfully pass pension and fiscal reforms. The administration passed an e nergy reform measure in 2008 and another fiscal reform in 2009. Mexicoâ⬠s GDP plunged 6. 2% in 2009 as world demand for exports dropped, asset prices tumbled, and remittances and investment declined. GDP posted positive growth of 5. % in 2010 and 3. 8% in 2011, with exports ââ¬â particularly to the United States ââ¬â leading the way. The administration continues to face many economic challenges, including improving the public education system, upgrading infrastructure, modernizing labor laws, and fostering private investment in the energy sector. CALDERON has stated that his top economic priorities remain reducing poverty and creating jobs. GDP (purchasing power parity) $1. 657 trillion (2011 est. ) $1. 596 trillion (2010 est. ) $1. 514 trillion (2009 est. ) note:à data are in 2011 US dollars GDP (official exchange rate) $1. 185 trillion (2011 est. ) GDP ââ¬â real growth rate . 8% (2011 est. ) 5. 4% (2010 est. ) -6. 2% (2009 est. ) GDP ââ¬â per capita (PPP) $1 5,100 (2011 est. ) $14,400 (2010) $13,600 (2009) note:à data are in 2011 US dollars GDP ââ¬â composition by sector agriculture:à 3. 8% industry:à 34. 2% services:à 62% (2011 est. ) Population below poverty line 18. 2% note:à based on food-based definition of poverty; asset based poverty amounted to more than 47% (2008) Labor force 49. 17 million (2011 est. ) Labor force ââ¬â by occupation agriculture:à 13. 7% industry:à 23. 4% services:à 62. 9% (2005) Unemployment rate 5. 2% (2011 est. ) 5. 4% (2010 est. ) note:à underemployment may be as high as 25%Unemployment, youth ages 15-24 total:à 10% male:à 9. 7% female:à 10. 6% (2009) Household income or consumption by percentage share lowest 10%:à 1. 5% highest 10%:à 41. 4% (2008) Distribution of family income ââ¬â Gini index 51. 7 (2008) 53. 1 (1998) Public debt 37. 5% of GDP (2011 est. ) 36. 9% of GDP (2010 est. ) Inflation rate (consumer prices) 3. 5% (2011 est. ) 4. 2% (2010 est. ) Central bank d iscount rate NA% (31 December 2010 est. ) 4. 5% (31 December 2009 est. ) Commercial bank prime lending rate 5% (31 December 2011 est. ) 5. 287% (31 December 2010 est. ) Stock of domestic credit $407. 4 billion (31 December 2011 est. $374. 2 billion (31 December 2010 est. ) Market value of publicly traded shares $454. 3 billion (31 December 2010) $340. 6 billion (31 December 2009) $232. 6 billion (31 December 2008) Agriculture ââ¬â products corn, wheat, soybeans, rice, beans, cotton, coffee, fruit, tomatoes; beef, poultry, dairy products; wood products Industries food and beverages, tobacco, chemicals, iron and steel, petroleum, mining, textiles, clothing, motor vehicles, consumer durables, tourism Industrial production growth rate 3. 9% (2011 est. ) Current Account Balance -$11. 27 billion (2011 est. ) -$5. 724 billion (2010 est. ) Exports $336. billion (2011 est. ) $298. 5 billion (2010 est. ) Exports ââ¬â commodities manufactured goods, oil and oil products, silver, fruits , vegetables, coffee, cotton Exports ââ¬â partners US 73. 5%, Canada 7. 5% (2009 est. ) Imports $341. 9 billion (2011 est. ) $301. 5 billion (2010 est. ) Imports ââ¬â commodities metalworking machines, steel mill products, agricultural machinery, electrical equipment, car parts for assembly, repair parts for motor vehicles, aircraft, and aircraft parts Imports ââ¬â partners US 60. 6%, China 6. 6%, South Korea 5. 2% (2009 est. ) Reserves of foreign exchange and gold $142 billion (31 December 2011 est. ) 114 billion (31 December 2010 est. ) Debt ââ¬â external $204 billion (31 December 2011 est. ) $195. 6 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â at home $321. 5 billion (31 December 2011 est. ) $326. 1 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â abroad $84. 92 billion (31 December 2011 est. ) $78. 38 billion (31 December 2010 est. ) Exchange rates Mexican pesos (MXN) per US dollar ââ¬â 12. 39 (2011 est. ) 12. 636 (2010 est. ) 13. 514 (2009) 11. 016 (2008) 10. 8 (2007) Fiscal year calendar year Indonesia Economy ââ¬â overview: Indonesia, a vast polyglot nation, grew an estimated 6. % and 6. 4% in 2010 and 2011, respectively. The government made economic advances under the first administration of President YUDHOYONO (2004-09), introducing significant reforms in the financial sector, including tax and customs reforms, the use of Treasury bills, and capital market development and supervision. During the global financial crisis, Indonesia outperformed its regional neighbors and joined China and India as the only G20 members posting growth in 2009. The government has promoted fiscally conservative policies, resulting in a debt-to-GDP ratio of less than 25%, a small current ccount surplus, a fiscal deficit below 2%, and historically low rates of inflation. Fitch and Moody's upgraded Indonesia's credit rating to investment grade in December 2011. Indonesia still struggles with pov erty and unemployment, inadequate infrastructure, corruption, a complex regulatory environment, and unequal resource distribution among regions. The government in 2012 faces the ongoing challenge of improving Indonesia's insufficient infrastructure to remove impediments to economic growth, labor unrest over wages, and reducing its fuel subsidy program in the face of rising oil prices.GDP (purchasing power parity) $1. 121 trillion (2011 est. ) $1. 054 trillion (2010 est. ) $993 billion (2009 est. ) note:à data are in 2011 US dollars GDP (official exchange rate) $834. 3 billion (2011 est. ) GDP ââ¬â real growth rate 6. 4% (2011 est. ) 6. 1% (2010 est. ) 4. 6% (2009 est. ) GDP ââ¬â per capita (PPP) $4,700 (2011 est. ) $4,400 (2010 est. ) $4,300 (2009 est. ) note:à data are in 2011 US dollars GDP ââ¬â composition by sector agriculture:à 14. 7% industry:à 47. 2% services:à 38. 1% (2011 est. ) Population below poverty line 13. 33% (2010) Labor force 117. 4 million (2 011 est. )Labor force ââ¬â by occupation agriculture:à 38. 3% industry:à 12. 8% services:à 48. 9% (2010 est. ) Unemployment rate 6. 6% (2011 est. ) 7. 9% (2010 est. ) Unemployment, youth ages 15-24 total:à 22. 2% male:à 21. 6% female:à 23% (2009) Household income or consumption by percentage share lowest 10%:à 3. 3% highest 10%:à 29. 9% (2009) Distribution of family income ââ¬â Gini index 36. 8 (2009) 39. 4 (2005) Public debt 24. 5% of GDP (2011 est. ) 25. 7% of GDP (2010 est. ) Inflation rate (consumer prices) 5. 7% (2011 est. ) 5. 1% (2010 est. ) Central bank discount rate 6. 37% (31 December 2010) 6. 46% (31 December 2009) ote:à this figure represents the 3-month SBI rate; the Bank of Indonesia has not employed the one-month SBI since September 2010 Commercial bank prime lending rate 12. 2% (31 December 2011 est. ) 13. 252% (31 December 2010 est. ) note:à these figures represent the average annualized rate on working capital loans Stock of domestic cre dit $305. 2 billion (31 December 2011 est. ) $254. 1 billion (31 December 2010 est. ) Market value of publicly traded shares $360. 4 billion (31 December 2010) $178. 2 billion (31 December 2009) $98. 76 billion (31 December 2008) Agriculture ââ¬â products ice, cassava (manioc), peanuts, rubber, cocoa, coffee, palm oil, copra; poultry, beef, pork, eggs Industries petroleum and natural gas, textiles, apparel, footwear, mining, cement, chemical fertilizers, plywood, rubber, food, tourism Industrial production growth rate 4. 1% (2011 est. ) Current Account Balance $5. 704 billion (2011 est. ) $5. 654 billion (2010 est. ) Exports $208. 9 billion (2011 est. ) $158. 1 billion (2010 est. ) Exports ââ¬â commodities oil and gas, electrical appliances, plywood, textiles, rubber Exports ââ¬â partners Japan 16. 3%, China 10%, US 9. 1%, Singapore 8. 7%, South Korea 8%, India 6. %, Malaysia 5. 9% (2009) Imports $172. 1 billion (2011 est. ) $127. 4 billion (2010 est. ) Imports ââ¬â commodities machinery and equipment, chemicals, fuels, foodstuffs Imports ââ¬â partners China 15. 1%, Singapore 14. 9%, Japan 12. 5%, US 6. 9%, Malaysia 6. 4%, South Korea 5. 7%, Thailand 5. 5% (2009) Reserves of foreign exchange and gold $136. 2 billion (31 December 2011 est. ) $96. 21 billion (31 December 2010 est. ) Debt ââ¬â external $158. 8 billion (31 December 2011 est. ) $196. 1 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â at home $105. 7 billion (31 December 2011 est. ) $86. 5 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â abroad $41. 89 billion (31 December 2011 est. ) $32. 85 billion (31 December 2010 est. ) Exchange rates Indonesian rupiah (IDR) per US dollar ââ¬â 8,696. 1 (2011 est. ) 9,090. 43 (2010 est. ) 10,389. 9 (2009) 9,698. 9 (2008) 9,143 (2007) Fiscal year calendar year South Korea Economy ââ¬â overview South Korea over the past four decades has demonstrated incredible growth and global integration to become a high-tech industrialized economy. In the 1960s, GDP per capita was comparable with levels in the poorer countries of Africa and Asia.In 2004, South Korea joined the trillion dollar club of world economies, and currently is among the world's 20 largest economies. Initially, a system of close government and business ties, including directed credit and import restrictions, made this success possible. The government promoted the import of raw materials and technology at the expense of consumer goods, and encouraged savings and investment over consumption. The Asian financial crisis of 1997-98 exposed longstanding weaknesses in South Koreaâ⬠s development model including high debt/equity ratios and massive short-term foreign borrowing.GDP plunged by 6. 9% in 1998, and then recovered by 9% in 1999-2000. Korea adopted numerous economic reforms following the crisis, including greater openness to foreign investment and imports. Growth moderated to about 4% annual ly between 2003 and 2007. With the global economic downturn in late 2008, South Korean GDP growth slowed to 0. 3% in 2009. In the third quarter of 2009, the economy began to recover, in large part due to export growth, low interest rates, and an expansionary fiscal policy, and growth was 3. 6% in 2011. In 2011, theUS-South Korea Free Trade Agreement was ratified by both governments and is projected to go into effect in early 2012. The South Korean economyâ⬠s long term challenges include a rapidly aging population, inflexible labor market, and heavy reliance on exports ââ¬â which comprise half of GDP. GDP (purchasing power parity) $1. 549 trillion (2011 est. ) $1. 495 trillion (2010 est. ) $1. 409 trillion (2009 est. ) note:à data are in 2011 US dollars GDP (official exchange rate) $1. 164 trillion (2011 est. ) GDP ââ¬â real growth rate 3. 6% (2011 est. ) 6. 2% (2010 est. ) 0. 3% (2009 est. ) GDP ââ¬â per capita (PPP) 31,700 (2011 est. ) $30,600 (2010 est. ) $28,90 0 (2009 est. ) note:à data are in 2011 US dollars GDP ââ¬â composition by sector agriculture:à 2. 6% industry:à 39. 2% services:à 58. 2% (2008 est. ) Population below poverty line 15% (2006 est. ) Labor force 25. 1 million (2011 est. ) Labor force ââ¬â by occupation agriculture:à 6. 4% industry:à 24. 2% services:à 69. 4% (2011 est. ) Unemployment rate 3. 4% (2011 est. ) 3. 7% (2010 est. ) Unemployment, youth ages 15-24 total:à 9. 8% male:à 11. 9% female:à 8. 5% (2009) Household income or consumption by percentage share lowest 10%:à 2. 7% highest 10%:à 24. 2% (2007)Distribution of family income ââ¬â Gini index 31 (2010) 35. 8 (2000) Public debt 33. 3% of GDP (2011 est. ) 35. 1% of GDP (2010 est. ) Inflation rate (consumer prices) 4% (2011 est. ) 3% (2010 est. ) Central bank discount rate 1. 5% (31 December 2011) 1. 25% (31 December 2009) Commercial bank prime lending rate 5. 9% (31 December 2011 est. ) 5. 508% (31 December 2010 est. ) Stock of dome stic credit $1. 356 trillion (31 December 2011 est. ) $1. 275 trillion (31 December 2010 est. ) Market value of publicly traded shares $996. 7 billion (31 December 2011) $1. 093 trillion (31 December 2010) $836. billion (31 December 2009) Agriculture ââ¬â products rice, root crops, barley, vegetables, fruit; cattle, pigs, chickens, milk, eggs; fish Industries electronics, telecommunications, automobile production, chemicals, shipbuilding, steel Industrial production growth rate 3. 8% (2011 est. ) Current Account Balance $29. 79 billion (2011 est. ) $28. 21 billion (2010 est. ) Exports $556. 5 billion (2011 est. ) $466. 4 billion (2010 est. ) Exports ââ¬â commodities semiconductors, wireless telecommunications equipment, motor vehicles, computers, steel, ships, petrochemicals Exports ââ¬â partners China 24. %, US 10. 1%, Japan 7. 1% (2009 est. ) Imports $524. 4 billion (2011 est. ) $425. 2 billion (2010 est. ) Imports ââ¬â commodities machinery, electronics and electr onic equipment, oil, steel, transport equipment, organic chemicals, plastics Imports ââ¬â partners China 16. 5%, Japan 13%, US 8. 5%, Saudi Arabia 7. 1%, Australia 5% (2009 est. ) Reserves of foreign exchange and gold $306. 4 billion (31 December 2011 est. ) $291. 6 billion (31 December 2010 est. ) Debt ââ¬â external $397. 3 billion (31 December 2011 est. ) $359. 4 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â at home 130. 3 billion (31 December 2011 est. ) $127 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â abroad $190. 4 billion (31 December 2011) $164. 8 billion (31 December 2009) Exchange rate South Korean won (KRW) per US dollar ââ¬â 1,107. 3 (2011 est. ) 1,156. 06 (2010 est. ) 1,276. 93 (2009) 1,101. 7 (2008) 929. 2 (2007) Fiscal year calendar year Turkey Economy ââ¬â overview Turkey's largely free-market economy is increasingly driven by its industry and service sectors, although its traditional agri culture sector still accounts for about 25% of employment.An aggressive privatization program has reduced state involvement in basic industry, banking, transport, and communication, and an emerging cadre of middle-class entrepreneurs is adding dynamism to the economy and expanding production beyond the traditional textiles and clothing sectors. The automotive, construction, and electronics industries, are rising in importance and have surpassed textiles within Turkey's export mix. Oil began to flow through the Baku-Tbilisi-Ceyhan pipeline in May 2006, marking a major milestone that will bring up to 1 million barrels per day from the Caspian to market.Several gas pipelines projects also are moving forward to help transport Central Asian gas to Europe through Turkey, which over the long term will help address Turkey's dependence on imported oil and gas to meet 97% of its energy needs. After Turkey experienced a severe financial crisis in 2001, Ankara adopted financial and fiscal refor ms as part of an IMF program. The reforms strengthened the country's economic fundamentals and ushered in an era of strong growth ââ¬â averaging more than 6% annually until 2008.Global economic conditions and tighter fiscal policy caused GDP to contract in 2009, but Turkey's well-regulated financial markets and banking system helped the country weather the global financial crisis and GDP rebounded strongly to 8. 2% in 2010, as exports returned to normal levels following the recession. Turkey's public sector debt to GDP ratio has fallen to roughly 40%. Continued strong growth has pushed inflation to the 8% level, however, and worsened an already high current account deficit. Turkey remains dependent on often volatile, short-term investment to finance its large trade deficit.The stock value of FDI stood at $99 billion at year-end 2011. Inflows have slowed considerably in light of continuing economic turmoil in Europe, the source of much of Turkey's FDI. Further economic and judici al reforms and prospective EU membership are expected to boost Turkey's attractiveness to foreign investors. However, Turkey's relatively high current account deficit, uncertainty related to monetary policy-making, and political turmoil within Turkey's neighborhood leave the economy vulnerable to destabilizing shifts in investor confidence.GDP (purchasing power parity) $1. 026 trillion (2011 est. ) $981. 2 billion (2010 est. ) $906. 9 billion (2009 est. ) note:à data are in 2011 US dollars GDP (official exchange rate) $763. 1 billion (2011 est. ) GDP ââ¬â real growth rate 4. 6% (2011 est. ) 8. 2% (2010 est. ) -4. 7% (2009 est. ) GDP ââ¬â per capita (PPP) $14,600 (2011 est. ) $13,800 (2010 est. ) $12,900 (2009 est. ) note:à data are in 2011 US dollars GDP ââ¬â composition by sector agriculture:à 9. 3% industry:à 28. 1% services:à 62. 6% (2011 est. ) Population below poverty line 16. 9% (2010) Labor force 27. 3 million note:à about 1. 2 million Turks work abroa d (2011 est. ) Labor force ââ¬â by occupation agriculture:à 25. 5% industry:à 26. 2% services:à 48. 4% (2010) Unemployment rate 9. 8% (2011 est. ) 12% (2010 est. ) note:à underemployment amounted to 4% in 2008 Unemployment, youth ages 15-24 total:à 25. 3% male:à 25. 4% female:à 25. 1% (2009) Household income or consumption by percentage share lowest 10%:à 2. 1% highest 10%:à 30. 3% (2008) Distribution of family income ââ¬â Gini index 40. 2 (2010) 43. 6 (2003) Public debt 42. 4% of GDP (2011 est. ) 43% of GDP (2010 est. ) ote:à data cover central government debt, and excludes debt instruments issued (or owned) by government entities other than the treasury; the data include treasury debt held by foreign entities; the data exclude debt issued by subnational entities, as well as intra-governmental debt; intra-governmental debt consists of treasury borrowings from surpluses in the social funds, such as for retirement, medical care, and unemployment. Debt inst ruments for the social funds are sold at public auctions. Inflation rate (consumer prices) 7. 8% (2011 est. ) 8. 6% (2010 est. ) Central bank discount rate 5. 25% (31 December 2011) 15% (22 December 2009)Commercial bank prime lending rate 16% (31 December 2011 est. ) 19% (31 December 2010 est. ) Stock of domestic credit $573. 8 billion (31 December 2011 est. ) $496 billion (31 December 2010 est. ) Market value of publicly traded shares $306. 7 billion (31 December 2010) $225. 7 billion (31 December 2009) $117. 9 billion (31 December 2008) Agriculture ââ¬â products tobacco, cotton, grain, olives, sugar beets, hazelnuts, pulses, citrus; livestock Industries textiles, food processing, autos, electronics, mining (coal, chromate, copper, boron), steel, petroleum, construction, lumber, paper Industrial production growth rate 9. 2% (2011 est. Current Account Balance -$71. 94 billion (2011 est. ) -$47. 74 billion (2010 est. ) Exports $133 billion (2011 est. ) $120. 9 billion (2010 est. ) Exports ââ¬â commodities apparel, foodstuffs, textiles, metal manufactures, transport equipment Exports ââ¬â partners Germany 10. 1%, UK 6. 4%, Italy 5. 7%, France 5. 3%, Iraq 5. 3%, Russia 4. 1% (2009 est. ) Imports $212. 2 billion (2011 est. ) $177. 3 billion (2010 est. ) Imports ââ¬â commodities machinery, chemicals, semi-finished goods, fuels, transport equipment Imports ââ¬â partners Russia 11. 6%, Germany 9. 5%, China 9. 3%, US 6. 6%, Italy 5. 5%, France 4. 4%, Iran 4. 1% (2009 est. )Reserves of foreign exchange and gold $96. 05 billion (31 December 2011 est. ) $86. 08 billion (31 December 2010 est. ) Debt ââ¬â external $313. 6 billion (31 December 2011 est. ) $290. 7 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â at home $98. 98 billion (31 December 2011 est. ) $86. 98 billion (31 December 2010 est. ) Stock of direct foreign investment ââ¬â abroad $18. 63 billion (31 December 2011 est. ) $16. 88 billion (31 December 2010 est. ) Exchange rates Turkish liras (TRY) per US dollar ââ¬â 1. 668 (2011 est. ) 1. 5028 (2010 est. ) 1. 55 (2009) 1. 3179 (2008) 1. 319 (2007) Fiscal year calendar year
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