Thursday, October 17, 2019

An Efficient Manner in the Organization Case Study

An Efficient Manner in the Organization - Case Study Example From this discussion it is clear that  financial data in a company is of much consequence. In order to ensure accurate financial data collection and its correct use, the company must make sure that the IT function and Finance team collaborate and use the expertise of one another for better data and analysis. Both teams must be on the same page.  This study declares that another important aspect is to make it simple and understandable to the extent that all stakeholders of a particular kind of data know what to do with it; however, it should not be broken down so much that it loses the essence of its purpose. For this reason, metrics are very important. It is extremely important to note what is measured. Off the mark measures will waste time and money, force people into performing on wrong parameters, all rendering the collected data unusable. To give meaning to any meaningless collection of data and convert it into useful and interpretable information, it is imperative that key t ools and techniques are in place which a) collect the right kind and data and b) make the conversion into useful information easy.  The very first step in this process is to assess whether the data collected is important in the first place. Was the purpose of collecting data to answer an important business question such as sales figures, costing information, employee satisfaction, etc.?  To have efficiency in the overall system, it is important that the data collected is for a reason.

Wednesday, October 16, 2019

My Personal Philosophy of Aging Essay Example | Topics and Well Written Essays - 750 words - 1

My Personal Philosophy of Aging - Essay Example Never in my life had I imagined that old age could be interesting and fan. The video clip however, proved that this was possible and that there are old people out there who are really enjoying being old. These people can dance, keep healthy and fit, party and widely socialize with one another. It is through this moment that, I completely shunned my previous view of old age as being boring, frustrating, sickly and of it being only a step away from death. Seeing this video has made me realize that, aging is unique to every person and it only depends on how one wants it to impact on his or her life. I have learnt that, I am the one to determine the kind of life to have as an older person. This has also taught me to treat each elderly person individually, identify their needs and respond to those needs separately without generalization. This will also be an effective way of ensuring that the treatment and care I give during practice is in line with the assessment done on an individual and specific problem and needs identified (Canadian Association of Critical Care Nurses, 1997). I have also realized that being old is just a continuation of a person’s life and that it should not stop one from living his or her life as before. Health is of value even during this age and maintaining it in terms of exercise, diet and positively enjoying oneself should be a priority for all (Wilmoth & Ferraro, 2004). Other than this, the old equally want to be loved, taken care of, have company and be respected just like everyone else. Caring for the older people during my practice should therefore ensure that my patients not only feel, respected, loved and cared for as brought about by Grinspun, et al. (2001-2002), but that they also feel like their transition into old age is normal and that it can be exciting as well. My role in taking care of them will include teaching them how to enjoy their life. The defining moment during this course has taught me

An Efficient Manner in the Organization Case Study

An Efficient Manner in the Organization - Case Study Example From this discussion it is clear that  financial data in a company is of much consequence. In order to ensure accurate financial data collection and its correct use, the company must make sure that the IT function and Finance team collaborate and use the expertise of one another for better data and analysis. Both teams must be on the same page.  This study declares that another important aspect is to make it simple and understandable to the extent that all stakeholders of a particular kind of data know what to do with it; however, it should not be broken down so much that it loses the essence of its purpose. For this reason, metrics are very important. It is extremely important to note what is measured. Off the mark measures will waste time and money, force people into performing on wrong parameters, all rendering the collected data unusable. To give meaning to any meaningless collection of data and convert it into useful and interpretable information, it is imperative that key t ools and techniques are in place which a) collect the right kind and data and b) make the conversion into useful information easy.  The very first step in this process is to assess whether the data collected is important in the first place. Was the purpose of collecting data to answer an important business question such as sales figures, costing information, employee satisfaction, etc.?  To have efficiency in the overall system, it is important that the data collected is for a reason.

Tuesday, October 15, 2019

3d Printing Technology Essay Example for Free

3d Printing Technology Essay Legitimate Concerns Facing 3D Printing Technology Executive Summary This research journal article discusses how 3D Printing technology may effect federal firearms regulations. The focus of the article is that, due to the development of 3D Printing technology, individuals, even people without technical expertise, now have the ability to use the new technology to produce guns at home much more easily than they ever have before. This behavior might bring great harm to society. However, if a comprehensive prohibition on using 3D Printers to manufacture personal weapons were implemented, it might defy the 2008 District of Columbia v. Heller Supreme Court decision. In fact, the increasing popularity of 3D Printing means lawmakers must decide soon whether or not to allow 3D Printing of weapons. 3D Printing either should only be allowed to produce things that cannot be used as lethal weapons. Or, secondly, it can be used to produce a physical, working gun. The second option might achieve advances in 3D printing technology and promote the development of firearms design. However, developments in 3D Printing technology are creating concerns that not only legitimate consumers but also criminals are able to â€Å"print† firearms at home. If the law doesn’t allow individuals to use 3D printers to manufacturer personal weapons like handguns, it might be illegal according to the Second Amendment of the Constitution, a provision which protects the right of individuals to possess firearms under the law. Specifically, under the 2nd Amendment individuals may have the right to create their own firearms for self-defense, and the right to the manufacture firearms technology and materials. Analysis and Critique In fact, 3D Printing technology is not brand new. This technology has been undergoing development for more than a decade. The reason it became more popular recently is because of decreasing usage costs, so more and more individuals have the opportunity to own 3D Printers for personal use. In my analysis and critique of this journal article, I will focus on three different areas: how well does it deliver information to the reader, how the product will evolve in the future, and what is my opinion of concern about 3D Printing technology relate to firearms production after reading this journal article. First of all, this article is well organized and divided into four parts. The first part introduces what 3D Printing is, and how it is possible to produce firearms using the technology. The second part explains why the sale and production of firearms are limited under federal regulations, and provides an overall outlook of the firearm industry. Part three includes explanations of how 3D printers may change firearms production. Finally, Part four describes the constitutional right to bear arms, and it also analyzes the extent to which Heller’s case may limit prohibitions on 3D Printing. Moreover, this article provides other critical information to explain key points. It is a very valuable introduction for a reader without a background in the subject who might not be very familiar with the IT industry or with the relevant legislation. Based on the data and supporting details provided by the author, readers will have a basic idea of the fundamental issues concerning the intersect ion of 3D Printing and weaponry. As a result, it relates the technology to big concerns about public security, and the author gives great examples of the various legal arguments on the topic. Therefore, I think this article is a valuable qualitative article that can expand people’s knowledge on the subject. Secondly, besides concerns about guns, there are no other disadvantages to the improvement of 3D Printing, which will make the operating cost of the technology increasingly cheap. Jensen-Haxel explains how 3D Printing actually works in his article: The process begins with a digital 3D model created using Computer Added Design (CAD) software. The software automatically slices the model into a stack of thin horizontal cross-sections about 0.1mm in height. The, 3D printer then builds the physical model by depositing material layer by layer. At the same time, 3D Printers are getting smaller and smaller, which will make it easier for consumers to have their own machines at home. This changes the old production model. Nowadays, people are allowed to produce whatever they want using a 3D Printer, all they need are the required data and materials. In fact, because of the development of the Internet, it is easier than ever for people to find these resources online. Evans states that: The quickest way to get started with 3D printing is simply to find models online that others have already created and shared on the Internet. The online 3D printing community is growing all the time, so more and more things are being shared every day. Therefore, the limitations of self-production have shifted from hardware difficulties to software or materials issues. The technology is becoming simpler to use, but it might harm light manufacturing industries because some designers may be able to use their own 3D Printers to produce a sample instead of finding established producers that use traditional manufacturing methods. Because of these improvements, the potential for 3D Printing is bright, but the light manufacturing industry might be negatively affected by it. Finally, the author argues that the rapid improvement of 3D Printing and the increasing convenience for individuals to produce things with it is both a major concern and a tremendous possibility. Should individuals receive the right to do whatever they want with 3D Printing technology, even the ability to â€Å"print† firearms? The topic of gun safety has become especially relevant since the school shooting in Newton, Connecticut last year. More and more people are arguing about if the government should make some changes to firearms regulation. Jensen-Haxel wrote in his article that: â€Å"As the power of production passes from industry to consumer, many areas of the law may be caught unprepared.† (P.448) Concerns about the rate of technological progress outpacing regulations are not limited to 3D Printing. Because of the relentless improvements to technology, more and more challenges will occur as regulators try to manage new technology. The fact is, in most cases, laws only change after a new problem occurs, which means that new products will often exist in a legal gray area before rules can be changed. How the government deals with this issue might be a big concern in the following decades. To sum up, this article first introduces 3D Printing technology, and gives an example how 3D Printing has been used to â€Å"print† a firearm. As a result, the author relates this new technology to a regulatory concern. Within his argument, he provides lots of legal information, and then tries to point out a fact that some gray areas exist because regulation usually develops slower than a new technology can. Back to this article, is seems like the future of 3D Printing technology in unclear until the government resolves the legal issues concerning manufacturing weapons with this technology. Reference Evans, B. (2012). Practical 3D printers: the science and art of 3D printing. New York: Apress. Jensen-Haxel, Peter (2012). 3D Printers, Obsolete Firearm Supply Controls, and the Right to Build Self-Defense Weapons Under Heller. Golden Gate University Law Review; May2012, Vol. 42 Issue 3, p447-496, 50p

Monday, October 14, 2019

Bio-ethanol Production by Using Oil Palm Frond Juice (OPFJ)

Bio-ethanol Production by Using Oil Palm Frond Juice (OPFJ) OBJECTIVES To enhance bioethanol production using OPFJ as substrate To optimized biotehanol production using various fermentation mode INTRODUCTION AND RESEARCH BACKGROUND Brazil and USA is the first producers with the world ethyl alcohol production about 51000 mills liters with an average of 73% of produces ethanol worldwide corresponds to fuel ethanol, 17% to beverage ethanol and 10% to industrial ethanol (Eufrozina NIGA, 2009). Bio-ethanol can be a product from an edible source which known as first generation bio-ethanol such as sugarcane and corns. Second generation of bio-ethanol is from lignocelluloses biomass is from non-edible source such as palm oil biomass. This make second generation of bio-ethanol is a better choice to replace fossil fuel without disturbing food sources. By converting the waste into valuable product we can reduce the environmental problem. Lignocelluloses material contain about 50% 60% carbohydrate in the form of cellulose and hemicelluloses which may be fermented to ethanol and 20%-35% of lignin (Mats Galbe et al, 2007). Nowadays palm oil tree is one of the main source for the production of bio-ethanol but there are not m uch attention is been given to oil palm sap which are product that come from the tree component such as oil palm trunk and oil palm fronds. Malaysia is the world’s largest exporter of palm oil product. Malaysia produces a large amount of agro-industrial residue with oil palm industry itself produced about 33 million tons of residues annually in the form of empty fruit bunch, fiber and shell (MPOB, 2009; Mohamed and Lee, 2006). Malaysia has produced about 51 million tons of oil palm fronds with 53% of the total palm biomass in year 2008 (Goh et al, 2010; MPOB, 2009). Bio-fuel that produces from palm oil tree is an environmental friendly therefore many interest are being shown to this sources. Mostly, the major parts of the solid biomass from the oil palm tree are being leave behind on the plantation is to be found as oil palm fronds. It has been reported that about 46837K tons of oil palm fronds has been produced in Malaysia in the year 2007 as an agriculture wastes. Palm oil frond is one of the useful raw materials for the production of bio-ethanol which is environmental friendly way. Pre-treatment of the oil palm frond need to be done to achieve a good bio-ethanol production. However, ethanol production from lignocellulosic biomass is relatively expensive because of the latest technologies. The main contradict are low yield and cost of the hydrolysis process (Sun and Cheng, 2002). Thus, oil palm frond juice is being introduced as another source for the production of bio-ethanol. Previous study has been shown that oil palm juice is suitable to used as fermentation feedstock because there was no inhibition on microbial growth or product formation, there were no impurities, it was easy to be operated, and it had no risk on health and safety (Zahari et al, 2012). Oil palm frond sap has been proved by Zahari et al. (2012) contains high sugar content which is 76.09 Â ± 2.85 g/l. There has been reported by Eze and Ogan (1988) that sucrose is the dominant sugar in the oil palm frond sap that consist of 10% w/v, as for glucose and fructose consist of et al, 2010. However in Malaysia, a study shows that glucose is the dominant sugar in the oil palm sap (Kosugi et al., 2010). Since there are many studies show that oil palm juice contains higher sugar content, a high level of the production of bio-ethanol from oil palm sap is further study. A study by Nwachukwu (2008) shows that improving yeast resistance by protoplast fusion increased yields of ethanol by 16% v/v. Apart from that, types of fermentation also one of the factor that improve the production of bio-ethanol. Thus, this project aim is to increase the yield of the bio-ethanol production using oil palm frond juice by various type of fermentation process. PROBLEM STATEMENT Uses of natural sources like petroleum is been used over the decades and the demand of this sources are being increases from time to time. Over the century, there are an increasing of energy consumption with the increasing of world population, thus more growing countries become industrialized which there are possibility that the sources will be depleted one day. Apart from that, petroleum is harmful to human and environment and with the increasing of fossil fuel will lead to increasing of carbon dioxide that eventually leads to global warming issue. Thus, an alternative sources of the fuels is been quest to overcome the shortness of the fossil fuels. Bio-ethanol is one of the solutions to this problem. This is because bio-ethanol is a form of renewable energy source which are easy available, low cost and most efficient bio-fuel. Bio-ethanol offers a great advantages because it can be produced from various feedstock such as corn, sugarcane, red seaweed part sugar beet and many more (M ohd Dinie et al, 2013).Apart from that , bio-ethanol help in reducing air pollution and carbon dioxide accumulation. Nowadays, high demands of fuel are been constantly increase over the world. Brazil is been known as the largest producer of the sugarcane and a most competitive producer of the bio-ethanol in the world. The arises of bio-ethanol from sugarcane is a prove that energy sources are being run out and constant increasing of fuel cars around the world. Fossil energy gives an impact to the atmosphere because the burning of the petroleum result in increasing of carbon dioxide emission to the environment which is the main causes of greenhouse effect. Production of bio-ethanol is increase significantly because many countries are looking for reducing oil imports, increasing rural economies and for better air quality (Eufrozina NIGA, 2009). 4.0Â  METHOD 4.1Â  Raw material preparation and Juice Clarification. (Potential Utilization of Sap from Oil Palm (Elaeis guineensis) for Lactic Acid Production by Lactobacillus casei by S. Chooklin et al, 2011) Oil palm frond (OPF) will be harvest from oil palm tree from a local oil palm plantation. The leaves from the frond will be cut off and discard. The harvest OPF will be press using sugar-cane machine press as soon as possible after the frond was harvested. OPF juice produced will be collect and filtered using coffee filter. The filtered OPF juice will be centrifuged at 10,000 rpm for 15 minutes. Supernatant will be stored at -20Â °C before use. 4.2 OPF Juice Sugar Composition (Ethanol Production Using Immobilized Saccharomyces cerevisiae in Lyophilized Cellulose Gel by Eleonora Winkelhausen et al, May 2010) HPLC type:HPLC (Shimadzu Japan ), equipped with refractive index Detector Type of column: APS-Hypersil column ( diameter of 250mm x 46mm) Mobile phase:70% Acetonitrile and 30% de-ionized water Column temperature:40Â °C with maximum operating temperature of 80Â °C Flow rate: 0.6 ml/min Sample volume: 20Â µl Pressure: 10MPa 4.3Â  Pure Culture Establishment (Study on Bioethanol Production from Oil Palm Trunk (Opt) Sap by Using Saccharomyces Cerevisiae Kyokai No.7 by Nina Farhana 2010) (Isolation of Microorganism from Oil Palm Sap by Nurul Nadia Ummira, 2011) 100mL of the Nutrient Broth Medium supplemented with g/L; Yeast Extract, 5; Peptone, 10 and 15% of glucose solution, 50 (Jamaludin, 2010) will be measured in a 250mL conical flask and will be autoclaved at 121 C in 15 minutes. Saccharomyces cerevisiae will be subculture into the Nutrient Broth. The mixture will be incubated for 24 hours at 150 rpm, 30oC. The suspension obtained will be subculture on the Nutrient Agar slant and will be incubated for another 2-3 days. The Nutrient Agar slants will be stored in refrigerator at 4oC. 4.4 Inoculums preparation (Study On Bio ethanol Production From Oil Palm Trunk (OPT) Sap by Using Saccharomyces Cerevisiae Kyokai No.7 by Nina Farhana 2010) (Optimization study of ethanol fermentation from oil palm trunk, rubber wood and mixed hardwood hydrolysates using Saccharomyces cerevisiae by K.L. Chin et al , 2010) About 3 4 loop of pure culture will be transferred from agar slant into 100 mL of sterile Nutrient Broth in 250 ml conical flask plug with sterile cotton. The flask will be incubated for 24 hours at 30Â °C and 150 rpm until reach standard initial concentration. The cell concentration will be standardized to 0.2 0.4 g/L (OD = 4.2) determined by turbidimetry at 600 nm. 4.5 Fermentation a) Batch fermentation will be performed for the optimization of bio-ethanol production. b) 20% (v/v) of inoculums size will be inoculated into the bioreactor with the condition of pH 4.5 and temperature of 30Â ºC , air flow rate of 1 vvm, agitation of 200 rpm with the initial 02 concentration of 30 %. c) The fermentation process will be carried out for 42 hour and sample will be taken out every 3 hour and analyze for bio-ethanol production, sugar and cell biomass. d) All experiment will be run in triplicate. 4.5.1Â  Batch fermentation. 4.5.1.1Â  Effect of sugar concentration (Effect of Cultural Conditions on Ethanol Production by Locally Isolated Saccharomyces Cerevisiae Bio-07 by Arifa Tahir et al, 2010) OPF juice volume use will be varied in the range of 30% to 50%. (30%, 40%, 50%) 4.5.1.2Â  Effect of agitation speed (Optimization of Fermentation Medium for the Production of Ethanol from Jaggery Using Box-Behnken Design by Mary Anupama.P et al 2010) The fermentation will be carried out at different agitation rate in the range of 125 rpm to 175 rpm. (125, 150, 175) 4.5.2Â  Fed Batch fermentation 4.5.2.1Â  Effect of feeding rate (Production of Ethanol by Fed- Batch Fermentation by Ngoh Gek Cheng et al, 2009) The fed batch fermentation will be run according to the best optimized condition from the batch fermentation condition. Substrate will be feed continuously into the bioreactor using peristaltic pump at glucose concentration (glucose concentration from OPFJ?) varying from 2 ml to 8 ml at feeding rate of 2 ml/h . (2 ml , 4 ml, 8 ml) 4.5.2.2Â  Effect of feed time (Production of Ethanol by Fed- Batch Fermentation by Ngoh Gek Cheng et al, 2009) a) Substrate will be feed from the interval of every one hour to three hour at feeding rate of 2 ml/h. ( 1 hour , 2 hour , 3 hour ) 4.6Â  Harvesting (Study on Bioethanol Production from Oil Palm Trunk (Opt) Sap by Using Saccharomyces Cerevisiae Kyokai No.7 by Nina Farhana, 2010) Each batch of fermentation will be terminated according to optimized time period. b) Sample (15 ml) will be taken out and the samples will be kept in refrigerator at 4oC before analyze for bio-ethanol production, sugar and cell biomass. 4.7Â  Yeast strain and it improvement (High-level Production of Ethanol during Fed Batch Ethanol Fermentation with a Controlled Aeration Rate and Non-Sterile Glucose Powder Feeding of Saccharomyces cerevisiae by Hyen-beom-seo et al, 2009) a) Saccharomyces cerevisiae will be growth on Nutrient Broth (yeast extracts, 10g/l; peptone, 20g/l; glucose, 20g/l and agar, 20g/l) slant in a 30 ml universal bottle. b) The slant culture will be exposed with UV light (6 watt, 254nm) for 15 second interval at a distance of approximately 7 cm from the slant. c) A loopful of irradiated slant culture will be streak onto a Nutrient Broth agar plate and subsequently incubated for 3 days at 27Â ºC. d) After that the colonies will be incubated in Nutrient Broth medium containing 100 g/l of ethanol at 27Â ºC while shaking at 100 rpm for 5 days to select resistance colonies. 4.8 Analysis method 4.8.1 Sugar content by HPLC (Oil Palm Fronds Juice as Future Fermentation substrate: A Feasibility Study by Che Mohd Hakiman Che Maail et al, 2014) HPLC type:HPLC (Shimadzu Japan ), equipped with refractive index Detector Type of column: APS-Hypersil column ( diameter of 250mm x 46mm) Mobile phase:70% Acetonitrile and 30% de-ionized water Column temperature:40Â °C with maximum operating temperature of 80Â °C Flow rate: 0.6 ml/min Sample volume: 20Â µl Pressure: 10MPa 4.8.2Â  Cell dry determination (Study on Bioethanol Production from Oil Palm Trunk (Opt) Sap by Using Saccharomyces Cerevisiae Kyokai No.7 by Nina Farhana 2010) Cell suspension will be vaccum-filtered using 0.45Â µm filter paper Cell suspension for each samples will have to be rinsed 2x with distilled water. Each sample will be dried at 70Â °C more than 24 hours until constant weight achieved. Dried filter paper will be weighed on a analytical balance to measure the biomass. 4.8.3 Ethanol concentration using GC (Production of Ethanol by Fed –Batch Fermentation by Ngoh Gek Cheng et al, 2009) Column : RT-Q-BOND (inner diameter of 0.32 mm) Carrier gas: Helium gas Detector: Flame ionization detector (FID) Temperature : 200 C Flow rate : 21.9 mL/min Pressure : 71.1 kPa Holding time : 5 minutes % bioethanol yield is calculated using this formula: 5.9 OPTIMIZATION OF ETHANOL FERMENTATION RSM analysis will be conducted using Design Expert Software. The optimized parameters will be verified by running the new fermentation as suggested. 6.0 ANALYSIS The significance of difference between each test variable will be determined using one way ANOVA analysis and Least Significance Test, computed using SPSS version 21.0 software. All tests will be done with a confidence interval of 95%. 7.0Â  REFERENCES Ngoh Gek Cheng, M. H., Andri Chahyo Kumoro, Tham, C. F. L. A. M. 2009. Production of Ethanol by Fed-Batch Fermentation. Pertanika J. Sci. Technol., 17, 399 – 408. Hyeon-Beom Seo, Seung Seop Kim,Hyoen0Yong Lee and Kyung Hwan Jung (2009).High level Production of Ethanol during Fed-Batch Ethanol Fermentation with a controlled Aeration Rate and Non-Sterile Glucose Powder Feeding of Saccharomyces cerevisie .Biotechnology and Bioprocess Engineering,14, 591-598. Jamaludin, N. F. M. 2010. Study On Bioethanol Production From Oil Palm Trunk (Opt) Sap By Using Saccharomyces Cerevisiae Kyokai No.7(ATCC 26422). Bachelor of Chemical Engineering (Biotechnology), Universiti Malaysia Pahang. Zahari, M. A., Zakaria, M. R., Ariffin, H., Mokhtar, M. N., Salihon, J., Shirai, Y. Hassan, M. A. 2012. Renewable sugars from oil palm frond juice as an alternative novel fermentation feedstock for value-added products. Bioresour Technol, 110, 566-71. Che Mohd Hakiman Che Maail, Hidayah Ariffin,Mohd Ali Hassan,Umi Kalsom Shah and Yoshihito Shirai (2014).Oil Palm Frond Juice as Future Fermentation Substrate : A Feasibility Study.Bioresource Technology,110,566-71. Miller, G.L., Use of dinitrosalicylic acid reagent for determination of reducing sugar,Anal. Chem.,31,426, 1959. GANTT CHART AND MILESTONES

Sunday, October 13, 2019

The Evaluation And Labeling Of Children With Disabilities Essay

The information given me by various professionals who have repeatedly evaluated my daughter is the biggest issue that I face in my life. In order for me to resolve my issue I need to explore whether my issue lies with the professionals and the process of evaluation, or with me not wanting to accept that my child is disabled.My six and a half year old daughter, Malia, began to show signs of delayed development at age eighteen months. Her speech started to regress and there were also behavioral signs that were significant enough for me to ask our doctor for advice. When was not concerned to the point that I was I contacted Multnomah County Developmental Disability department and requested that they evaluate Malia. They agreed that that were delays, and made a referral to Portland Public Schools Early Intervention Program for special services suchas speech therapy, occupational therapy, and other early learning resources for children with disabilities. I also switched Malia to a pediat rician who immediately referred her for a full-scale evaluation at Oregon Health Sciences University (OHSU) where they have an evaluation clinic for children with disabilities. At this point Malia was two and a half years old and this is where I began to take issue with the evaluation process.The process was a one day period where up to twelve doctors, psychologists, speech pathologists, audiologists, and occupational therapists each spent thirty minutes with Malia, evaluating her based on standard tests. After six hours with Malia, the professionals gathered together and discussed their conclusions. After their discussion, they called Malia and me in. They told me that their diagnosis for her was "a mild conductive bilateral hearing loss, language disorder and borderline intelligence."That was all the information they gave me, other than to tell me that Malia's pediatrician would receive a report and follow-up accordingly. No special suggestions or support were offered to me or to Malia. I did not know the exact meaning of "borderline intelligence" at the time, so I assumed it meant her intelligence was not above average but not below. I found out at her second evaluation two years later that it means low intelligence, bordering on mental retardation. I followed up on the hearing loss with an Ear Nose and Throat (ENT) doctor and Malia had her tonsils and ... ...lp the examiners have a more complete understanding of the child. Another idea that I listed was to have the professional spend more time exploring the child's strengths andpossibilities in order to aid in designing a special program in which the child would thrive. I have spent the past four years being angry with the clinic at OHSU. I can truly say that all of this channeling and exercising (PMI and APC) has helped me to have a better understanding of why the testing is as it is, how it affects us, and most importantly, that a closed mouth does not get fed. If I want changes, I now understand that I have to speak up and talk to someone who can do something about it. Now that I am more clear about the process, I can offer something positive to help other families avoid the pain and anger thatI have endured. Knowing this, and feeling good about the road ahead, is a very good place for me to start. The most important realization for me is that Malia is still Malia, regardless of any label they placed upon her. In conclusion, whether or not I make a difference in modifying the evaluation process, I know that Malia is and always will be the same wonderful child she has always been.

Saturday, October 12, 2019

acting on the national physical activity guidelines Essay -- essays res

Acting on the National Physical Activity Guidelines Introduction The purpose of this study was to identify if presenting a sedentary individual with the Australian governments National Physical Activity Guidelines (NPAG) would improve their overall physical activity. There was a structured interview which was conducted at 2 week intervals. The interview assessed the subject current physical activity levels and their willingness to be able to incorporate physical activity into there daily lives while following the guidelines suggested. The NPAG guidelines were presented before each interview and explained to the subject. Additional surveys were conducted to evaluate the subject’s anxiety levels and self-efficacy. Throughout the study we could benefit by seeing if presenting a sedentary individual with the NPAG would help improve levels of fitness and see if the governments’ intervention would help the Australian population. Methods This study was conducted on a sedentary 48 year old Canadian woman. The details of the study were presented and an informed consent was gained from the participant. The interviews were conducted over the phone, since the subject is currently living in Canada. The first structured interview (see appendix 1) was conducted and then the physical activity guidelines were presented. Being unable to physically present the pamphlet to the subject the researcher had her access them via the internet (Australian Gouvernment, 1999). As the subject reviewed the guidelines the researcher explained them and ask the subject to choose 1 or more of the guidelines that she felt she could incorporate into her daily life. At this stage a general self-efficacy scale was administered. The survey consists of 10 simple questions aimed at finding if the subject had a high or low self-efficacy. Self-efficacy is described as being ones belief in their ability to organize and execute the sources of action requir ed to manage prospective situations (Albert Bandura, 1986). A third and final survey was administered and measured the subject’s proactive attitude levels, meaning the subjects beliefs about their ability to carry out a course of action through personal motivation. This questionnaire consisted of 8 short questions where the subject had to answer by; 1) not true at all, 2) barely true, 3) moderately true or 4) exactly true. http://www.fuberlin.de/ge... ...bsp;  Ã‚  Ã‚  Retrived March 15th 2005   Ã‚  Ã‚  Ã‚  Ã‚  From: http://www.healthactive.gov.au Crawford, S., Erklund, R.C., (1994), ‘Social Physique anxiety, reasons for exercise, and attitudes towards exercise settings’, Journal of Sport and exercise psychology, 16, 70-82. Dzewaltowski, D. A., Noble, J. M., & Shaw, J. M. (1990). Physical activity participation: Social cognitive theory versus the theories of reasoned action and planned behavior. Journal of Sport & Exercise Psychology, 12, 388-405. Hart, E.A., Leary, M.R., Rejeski, W.J., (1989), â€Å"The measurement of social physique anxiety†, Journal of sport and exercise psychology, 11, 94-104. Ralf Schwarzer, & Matthias Jerusalem (1993), General Self-efficacy scale   Ã‚  Ã‚  Ã‚  Ã‚  Retrived March 14th 2005 From: http://www.fu-berlin.de/gesund/skalen/Language_Selection/Turkish/General_Perceived_Self-Efficac/general_perceived_self-efficac.htm Ralf Schwarzer (1999), Proactive Attitude Scale   Ã‚  Ã‚  Ã‚  Ã‚  Retrived March 14th 2005   Ã‚  Ã‚  Ã‚  Ã‚  From:http://www.fuerlin.de/gesund/skalen/Language_Selection/Turkish/Proactive_Attitude/proactive_attitude.htm