Saturday, October 5, 2019

Contingency Theory and Global Leadership Essay Example | Topics and Well Written Essays - 1000 words

Contingency Theory and Global Leadership - Essay Example Since, parties in a global market come from diverse backgrounds, global leaders have challenges in assessing the diverse demands of the parties (The Leadership Trust, 2008). Indeed, every cultural group has different demands. Moreover, the existence of boundaries between geographies and markets derives complexities in assessing the demands of parties in different geographies since there are no universal demands that apply to all geographies (The Leadership Trust, 2008). The rapid global impact of unforeseen events poses a great challenge to the global leaders since they cannot predict the occurrence and the effects of such events on the demand and thus assessing the demands of a situation given a global role. A global leader will also encounter challenges that emanate from social, economic, and political change. The global leader will also face the challenge of developing a creative approach in assessing the demand and implementing the solutions to various problems in the global mark et. Furthermore, lack of inspiring visions that can apply across cultural and organizational boundaries without losing meaning is also a challenge in assessing demands of a situation given a global role (The Leadership Trust, 2008). ... Developing self-reflective leadership, effective conflict resolution, and adopting diversity in the management and assessing demand will resolve the problems associated with assessing demand in a global situation. Moreover, the practice of creating global ethics and global strategies that will be flexible to multicultural differences will be very fundamental in this case (O’Brien, 2009). The creation of a vision and strategy as well as systems that managers can manage would play a significant role in resolving the above named problems. Furthermore, the presence of a Global Leadership and Public Policy as well the focus on organization and teamwork would help in addressing the challenges related to assessing demand in a global situation. Indeed, we can adopt the leadership theories to develop an organizational design that would relate to the global challenges in this context. A practice that relates to the situational variables and establishing an organization with internal fea tures that matches the demands of the diverse environments will help in assessing the demands in a global situation. The contingency theory asserts that there is no one best way to organize and that any way of organizing is not equally effective. The Contingency Theory asserts that a global leader must match their leadership style with the situational demands (Northouse, 2012). Ideally, the contingency theory confirms that no leadership style suits all situations and that specific variable like the dynamics of the situation, leadership style, and characteristics of the followers define the success of any leadership style. Personally, I experienced this when our marketing manager used contingency theory in a global role

Friday, October 4, 2019

The most important concepts in the business-supply chain relationship Essay

The most important concepts in the business-supply chain relationship - Essay Example For example, the supply chain of an automaker is different from that of a consumer electronics goods manufacturer, meaning their infrastructure also contrast (Oliveira and Gimeno 29). Suppliers in the automotive industry must have adequate capital and facilities to provide materials at competitive prices, and these materials are unique to that industry. On the other hand, automakers should have the capacity to store and process these materials to develop the product and then sell it through the distribution networks. Suppliers and producers must observe relevant legal requirements in their specific industries to avoid attracting punitive measures that would handicap their capacity and freedom to operate (Oliveira and Gimeno 54). Industry-specific legal and regulatory requirements must be observed by both parties, or their relationship would be compromised by interruptions and constraints. For businesses, social and working conditions are part of company policy regarding employee welfare and the employer-employee relationship. They are also closely related to the labor policies of whichever countries they operate in. In recent times, there have been reports of employee maltreatment involving poor working conditions, extremely low wages, and lack of employee rights, especially among suppliers (Stadtler, Kilger, and Meyr 42). Large companies like Nike have been accused of working with rogue suppliers who do not respect labor rights, and this has damaged their reputations. As such, businesses and supply chains must demonstrate adherence to ethical practices and respect for labor laws. This involves communication and operational efficiency. To keep the supply chain running optimally, suppliers must communicate with their partners at various levels and ensure that all processes run seamlessly. There has to be good communication between businesses and suppliers, to reduce

Thursday, October 3, 2019

Career Competence Factors Essay Example for Free

Career Competence Factors Essay The essential skills and abilities associated with students’ personal learning styles are many of the capabilities hiring managers look for when reviewing applications. University of Phoenix learning goals represent another set of core competencies that can help you become recognized as an exceptional candidate or employee. Part A Complete the Personality Spectrum on pp. 66–67 in Ch. 3 of Keys to Success. Based on the results, respond to the following: What is your primary strength? My primary strengths are that I am a THINKER and an ORGANZER. How does this strength make you a strong candidate or employee? I am good at solving problems and I am responsible and reliable. What is one area of improvement?Being a giver is an area that I need improvement in. How can you improve in this area to become a stronger candidate or employee?I can improve by being more sensitive to others feelings and needs. Part B Read the University of Phoenix Material: University of Phoenix Learning Goals, included in the materials for this assignment. Fill in the following matrix with summaries of how each university learning goal can help you with career preparedness. University Learning Goal How can each goal prepare you for success in the workplace? Professional Competence and Values Having values and ethics can help you in makin important and critical decision in the workplace. Critical Thinking and Problem Solving

Introduction To Polyurethane Foam Engineering Essay

Introduction To Polyurethane Foam Engineering Essay Polyurethanes are broad class of materials used widely in many applications. Polyurethanes are also written as PUR. Polyurethanes also called as urethanes are characterized by urethane linkage -NH- C (=O) O . This linkage is formed due to the reaction of isocyanate group with hydroxyl group as shown in the following equation. [2] Equation 1.1 Equation showing the reaction of urethane linkage in polyurethanes. [2] Polyurethanes are discovered by Otto Von Bayer co workers in 1937. [3] The characteristic structure of urethanes is given as: And they can be considered as esters or amide esters of carbonic acid. [3] The polyurethanes are also sometimes called as urethanes only and they are also called as isocyanate polymers. They are synthesized by the reaction of polyfunctional hydroxyl compounds with polyfunctional isocyanates. [3] The structure of polyurethane formed from di hydroxyl compound and di isocyanate is given as: Polyurethane is widely used in various fields such as making of plastics, cushions, foams, rubber goods, synthetic leathers and fibres. The total annual production of urethanes in the world is estimated to be 8 million tons per year and is increasing 4-5 % yearly. [4] Polyurethane is a versatile polymer having unique chemistry with excellent mechanical and optical properties and have good solvent resistance. [5] Polyurethanes are materials with many applications but major applications are in furniture industry, foam industry, building construction and shoe industry and also polyurethanes can be used in medicinal and agricultural applications. [6] Polyurethanes have large number of applications and uses in different areas due to their versatility but most important application of polyurethane which has covered almost 29% of the total market of polyurethane is polyurethane foam. [7] 1.2 Polyurethane Foam The major application of polyurethane is polyurethane foams which are extensively used in many applications. They are referred as PUR foams and they are prepared by the reaction of addition, condensation or cyclotrimerization. [2] Following table shows the type of reaction in the foaming system and the resulting foam property present in the foam produced by that respective reaction. Foam Reaction Foam Property Polyurethane Poly addition Flexible and rigid Polyisocyanurate Poly cyclo trimerization Rigid Polyamide Poly condensation Flexible and rigid Polyimide Poly condensation Semi rigid and rigid Polyurea Poly addition Flexible and rigid Poly Carbodiimide Poly condensation Semi rigid Poly Oxazolidone Ring opening Poly addition Rigid and semi rigid Table 1.1 Table showing different types of foam based on their synthesis reaction [2] Mainly PUR foams are classified into two types which is flexible and rigid foam and then flexible and rigid foam are classified into various sub types depending upon the different type of applications in which they are used. Polyurethane structure consist of a polyol and polyisocyanate component we can say that polyols are the building blocks and isocyanates are jointing agents. So polyurethane foam chemistry is called as building block chemistry. All kinds of polyurethane foams are prepared with the proper choice of polyol and isocyanate component with respect to chemical structure, equivalent weight and functionality. [2] Following table shows the classification of PU foam with respect to polyol component and functionality. Polyol Rigid foam Semi rigid foam Flexible foam OH No. 350-560 100-200 5.6-7.0 OH Equivalent No. 160-100 560-280 10,000-80 Functionality 3.0-8.0 3.0-3.5 2.0-3.1 Table 1.2 Classification of polyurethane foam w.r.t polyol and functionality [2] 1.3 Foam Preparation Technology Polyurethane foams are prepared by mixing isocynate component in polyol having catalyst, fillers, additives, surfactants and other chemicals in it. No heating is required at room temperature. [2] 1.3.1 Foaming Systems Foaming systems are classified into three types based on the type of chemicals used in the synthesis process. These types are: One step One shot system Quasi Pre polymer system Full Pre Polymer system One step system and Quasi system are mostly used in foaming industries now in which one step process is used majorly while pre polymer system was used only in the early times of urethane industry. [2] 1.3.1.1 One step one shot System In one step system Component A and Component B are taken separately. Component A contains only polyisocyanate component while component B contains polyol, surfactant, blowing agent and catalyst. Both components are mixed which led to the formation of foam. 1.3.1.2 Quasi Pre polymer System In this system in component A polyisocyanate component is taken with polyol and in component B rest of the ingredients are taken with polyol which includes catalyst, blowing agent etc. Mixing forms a foaming product. 1.3.1.3 Full Pre polymer System In full prepolymer system in component A poly isocyantae component is taken and polyol is also added in it while in component B polyol is not added while the rest of chemicals like blowing agents, surfactants and catalyst are taken. Components A B are mixed and foam is formed. These foaming systems show only two component system however in industrial processes there are modifications. For example in slabstock process three or four streams are employed carrying different reactants. [2] 1.3.2 Foaming Processes Mainly three types of foaming processes are used, which are cup foaming, box foaming and machine foaming. Machine foaming is further classified into various foaming processes. [2] 1.3.2.1 Cup Foaming This foaming process is also known as hand mixing. This method is mostly used for lab scale synthesis of foaming products. In this process mixing is done in paper or plastic cups thats why called as cup foaming. In cup foaming poly isocyanate component is taken in a cup and rest of the reactants are also taken in a separate cup which includes polyols, catalysts etc. Then both the components are mixed using electric balance or by hand mixing and a foaming material is formed in the shape of a cup. This is the simple and cheap foaming process thats why used widely on lab scale. 1.3.2.2 Box Foaming Box foaming is better than cup foaming to obtain sufficient amount of samples for evaluating foam properties for machine foaming. The sizes of the box range from 15x15x15 cm and 30x30x30 cm. The inside of the box is lined with craft paper. The procedure is almost similar to that of cup foaming and mixing is done through electric drill equipped with mixer. Immediately after mixing system is poured into the box and allowed to rise to obtain foam. Foam is cured at room temperature after some time. [2] This method is also used largely on lab scale to produce foam. 1.3.2.3 Machine Foaming In machine foaming variety of machine processes are available which are one by one described as under. [2] 1.3.2.3.1 Large Box Foaming It is a discontinuous process used to produce small foam blocks with smaller volumes. The size can be 1x1x2 meters. Due to exothermic conditions small modification is required in the process as compared to the box foaming process. 1.3.2.3.2 Slabstock Foaming Slabstock foam is made by the continuous pouring of foamable liquids on a moving conveyer. A cut-off segment of the continuously produced foam loaf is called a block or bun [2]. In the case of polyether-based flexible urethane foam, a slabstock foam size can be about 1 meter high and 2 meters wide, with a foam density of 1.6 to 2.0 pound/ft3. The cross section is rectangular with a crown-shaped top surface. The higher the crown, the less the yield of available foam. Two techniques canto used to reduce the crown. One method is to pull vertical sides of rising foam. Another technique is to compress the top of crown surface. Equipment for doing this is commercially available. [2] 1.3.2.3.3 Pour-in-Place Foaming This process includes pouring of foaming ingredients into a void space to form an integral part of the foam and substrates. Products which use this process are household refrigerators and deep freezers. 1.3.2.3.4 Sandwich Foaming and Molding Sandwich foaming is used to produce sandwich panels from foam cores. It can be produced continuously using conveyers or discontinuously using jigs. Surfaces material can be craft paper in it. Molding is used to produce shaped foam products such as car seats and furniture. Reactants are placed in mold cavity and cured in the mold. After curing molded foam is removed. [2] 1.3.2.3.5 Spraying and frothing Spraying is a unique process used for urethane and iso cyanurate foams .It creates insulation layers not only on flat surfaces like roofs but also on non flat surfaces such as spherical tanks and pipes and building structures such as frames. Frothing process in urethane systems is similar to that of shaving cream. There are different types of frothing processes which are conventional frothing processes, chemical frothing and thermal frothing etc. Frothing process usage depends upon the reactants and conditions and which type of foaming product is required. [2] 1.4 Types of Polyurethane foams Major classes of polyurethane foams are flexible and rigid foam further these two types are more classified according to their extensive applications. 1.4.1 Flexible Polyurethane foam Flexible polyurethane foams are synthesized by slabstock process or by molding process and they are also classified further on the basis of technique used for their synthesis. They are also classified on the basis of polyol in polyether and polyester foams. Slabstock foams include conventional polyether foam, high-resilience (HR) foam, visco-elastic foam, super-soft foam, energy-absorbing (EA) foam, semi flexible foam, and flexible polyester foam. Molded foams are classified in two classes: hot molded foam and cold molded foam. [2] All classes of flexible foams are explained one by one as follows . 1.4.1.1 Slab stock foam The contionous piece of foam by the continuous pouring of foaming ingredients on a continuously moving conveyer is called slab stock foam. A cut off segment of slab stock foam is called as bun foam. Slab stock process is widely used in industry in production of flexible polyurethane foam. [2] In slab stock foam process inclined conveyer is used from the beginning of urethane industry. Following figure shows the production line of contionuous slab stock machine. Figure1.1 Continuous slabstock machine [2] The cross section of slabstock foams produced by the inclined conveyer process is not exactly rectangular and has crown shape. A crown-shaped cross section of foam bun results in a lower yield of fabricated foams. Accordingly, some improved processes to obtain rectangular cross sections have been proposed. One step process is widely used in these foaming systems. All ingredients are pumped into the mixing head through several streams and are poured from the mixing head onto the moving conveyer. From the standpoint of viscosity and metering accuracy, some ingredients are preblended. These blends include a blend of water and amine catalyst, a blend of tin catalyst and polyol, and a blend of physical blowing agent and polyol. The reaction temperatures in core foam usually reach about 160 to 170Â °C. The exothermic heat is mainly a function of the water-isocyanate reaction. The reaction temperatures are affected by the isocyanate index, water level, and catalyst concentration.[2] Poly ether slab-stock foam is important in slab-stock flexible PU foams and it is produced by this slab-stock process widely in industries. 1.4.1.2 Molded Flexible foams Molded flexible foams are used for making shaped products such as automotive seats, child seats, head restraints, vibration damping for automobiles, arm rests, furniture cushions and mattresses. The density distribution of molded foams is composed of high density skin foam and low density core foam. In the molding process mixed foaming ingredients are poured through a mixing head into a preheated mold made of aluminum, steel, or epoxy resin. The mixed ingredients flow and expand in the mold, and then the molded foams are kept at the required curing temperature for a limited time, which is followed by de-molding.[2] Molded flexible foams are further classified into hot molded and cold molded flexible polyurethane foams. 1.4.1.2.1 Hot Molded flexible foams Hot molded foam is produced using conventional polyether polyol with TDI 80/20. In 1961 hot-molded urethane foam mattresses was commercialized that provided better sleeping comfort than slabstock foam mattresses and greater durability. Because of the relatively higher cost, however, the molded mattress was not competitive with slabstock foam mattresses, and production was discontinued. [2] 1.4.1.2.2 Cold Molded flexible foams Cold molded flexible foam is prepared at very low mold temperatures of 60 to 70 Â °C with mold retention time of 10 minutes and then cured in a separate oven or at room temperature. In this type mostly isocyante components used are blends of TDI MDI and polyol used is polymer or graft polyol. Dual hardness automotive seats are made by this process using graft polyols. [2] 1.4.1.2.3 High Resilience HR foams HR foams have higher resiliency than conventional flexible foams. These foams are prepared by cold molded process. The formulation principle is to reduce intermolecular interactions such as hydrogen bonding of urethane linkages, irregular structures of polymeric molecule, and so on. High Molecular weight polyether polyols are used in the formulation of these foams. Polyisocyante components used are blends of TDI MDI with the weight ratio of 80/20. Also polymeric MDI alone can be used. HR foms are widely used in furniture and automotive applications. [2] 1.4.1.2.4 Visco-elastic foam Visco-elastic VE foams are characterized by slow recovery after compression. The foam is also called low-resiliency foam, slow-recovery foam, ergonomic foam, better-riding comfort foam, and temperature-sensitive foam. VE foams are used by NASA in early 1960 but they are highlighted commercially only in the recent years. VE foams are synthesized using polyol blend of high and low molecule weight polyols with TDI or MDI, and they can also be produced using blend of MDI TDI with polyether polyol. TDI-based VE foams are soft to the touch and have very low resilience and slow recovery. MDI-based foams are easier to process and can be produced in a wider range of isocyanate indexes. However, physical strengths of MDI-based foams are lower, resilience is higher, and compression set is better than TDI-based foams. The VE foam market includes seat cushions for people who spend a long time sitting such as truck drivers, office workers, and airline pilots, as well as for NASAs space shuttle seats, wheelchair seats, and so on; sporting goods that require energy absorption such as gym mats, helmet linings, leg guards for ice hockey, ski boots, and ice skates. [2] Our main product is VE foam and it is further explained in the later chapters. 1.4.1.2.5 Super soft slab-stock foam This foam can be prepared by using a high molecular weight polyether triol with TDI 80/20. Blowing agent can be water alone or some physical blowing agent can be used with water. It is a low density foam. Major market of super soft foam is high quality back cushions for sofas. This foam also have low cross linking density. [2] 1.4.1.2.6 Semi flexible slab-stock foam These foams have high open cells, high load bearing and high energy absorbing characteristics. These foams are used in large number of automotive applications such as bumper cores, interior knee bolsters, side impact absorbing door panels, and headliners under the automotive roof. Due to energy absorbing characteristics this foam may be called as Energy absorbing EA foam. [2] 1.4.1.2.7 Reticulated foam It is 100% open cell structure foam with no cell membranes. Removal of cell membranes for polyether foam is possible when membranes are dissolved with an alkaline solution. Reticulated foam find its applications in various mats, filters and pads.[2] Mostly the foam used in floor mats is this type of foam and it is mostly used in making mats and filters because it is completely open celled foam. 1.4.1.2.8 Integral skin flexible foam Integral skin foam is also called self skin foam. It consists of high density skin foam and low density core foam that is sandwich structure. The mold temperature for integral skin foam is carefully controlled at 40 to 70 Â °C. Water can be used as a blowing agent but it produces thin skins. Integral skin foam is prepared by open mold process or by reaction injection molding. [2] 1.4.1.2.9 Micro-cellular Elastomers These are also called foamed urethane elastomers. The density is in the range of about 320 to 960 kg/m3. Micro-cellular foams are prepared by using aliphatic polyester diols with poly tetra methylene ether glycol (PTMEG). The poly isocyanate component used is TDI pre-polymer and liquid MDI. Also chain extenders and cross linkers are used. Water is used as a blowing agent. These elastomeric foams are used for various shock absorbing elements in vehicle suspensions, precision machines, shoe soles and sports shoes etc. [2] 1.4.1.2.10 Shoe Sole foam The advantages of polyurethane foam in shoe soles include high abrasion resistance, high flexibility, low density, high cushioning, and solvent resistance. In addition, the direct molding of the sole with the upper part of shoe makes it possible to increase production efficiency and lower production costs. Casual shoes are produced using polyether-based foam systems. Some sports shoes such as tennis shoes are produced by polyester foam systems, because polyester-based foam has higher abrasion resistance, tensile strength, and elongation at break in comparison with polyether-based foams. [2]

Wednesday, October 2, 2019

Is NAFTA That Great? :: Essays Papers

Before I get into the details of the North American Free Trade Agreement (NAFTA) that took effect on January 1, 1994 I want to call attention to what it is that makes this an interesting topic to me. On that date I was only eleven and was completely oblivious to what the agreement incorporated. My entire family comes from a Mexican heritage so NAFTA was definitely a topic of conversation at the dinner table. All I really understood was that its implementation would hopefully stimulate the Mexican economy and improve its trade relationship with the United States and the rest of the World. Well now I am twenty-one and in the ten years since NAFTA has been implement I have heard relatively nothing about the benefits of the agreement. Therefore, I began to wonder why is it that I have heard nothing? In this research paper, I plan to not only help people better understand what NAFTA was trying to accomplish but also evaluate its overall effects. Did NAFTA accomplish what it said it would or has it accomplished nothing in the last ten years? Overview of NAFTA Three of the main issues that I would like to talk about later in this paper have to do with the peso crisis, the political turmoil that happened in 1994, and the many problems that exist on the US-Mexico borders. However, before I dive into those three areas I would first like to give an overview of NAFTA itself and its â€Å"effects.† I put effects in quotations because as I researched the agreement I quickly found out that many of the things that NAFTA claimed to accomplish either would have happened regardless or did not really happen at all. The North American Free Trade Agreement, as mentioned earlier, was implemented on January 1, 1994. Its main goal was to basically phase out almost all of the restrictions on trade and investment flows between the United States, Canada, and Mexico. What is important to mention is that NAFTA mainly concentrated on the US-Mexico problem seeing that the Canada-United States Free Trade Agreement had been implement a couple years before NAFTA was introduced.

Tuesday, October 1, 2019

Abraham Lincoln Essays -- essays research papers fc

  Ã‚  Ã‚  Ã‚  Ã‚  Abraham Lincoln was born in a log cabin located in Hodgenville Kentucky on the twelfth of February in the year of 1809. His parents were Thomas and Nancy Hanks Lincoln. Lincoln had one older sister (Sarah) who was born in 1807. Three years after Abraham was born, his mother gave birth to a baby boy they named Thomas. The family was faced with devastating turmoil when Thomas died while he was still an infant. When Abe was nine years old he was kicked in the head by a horse, which caused his family to believe him to be dead. He survived, but his mother died a few months later of milk sickness. Thomas, Abraham’s father, remarried one year later to a young woman named Sarah Bush Johnston. Sarah was a widow who had three children of her own. Abe became extremely fond of his step mother and developed a great deal of affection towards her. In the years 1820-1822 Lincoln briefly attends school. In 1824 Lincoln began to plow and plant for his neighbors. During the f all and winter seasons he would attend school. Lincoln constantly borrowed books and read during any opportunity possible. On January twentieth of the year 1828 Sarah, Abe’s sister, passes away during childbirth. Three months later Lincoln takes his first trip to New Orleans on a flatboat caring farm produce. During this trip Abe experiences a slave auction and is attacked by seven black men attempting to rob him. In March of 1830 Abraham and his family move to Illinois, a two hundred mile journey, and settle along the Sangamon River. Once again Abraham Lincoln’s father moves, but this time Abe ventures to New Salem, Illinois. He remained there working as a clerk in the village store. The owner of the store also allowed Lincoln to sleep in the back. While in New Salem, Lincoln also began to participate in a local debating society. Two years after his family had moved to Illinois Lincoln found himself as the candidate for the Illinois General Assembly. He enlists in the Black Hawk war one month later. He was elected Captain of his rifle company, but was forced to reenlist as a private after that company was disbanded. During his three months of service he never fought in a battle. On August sixth he lost the election for the Illinois General Assembly. Lincoln was hit with another blow when the store that he worked at went out of business. He and his partner, William Berry, deci... ...an Cousin†, John Wilkes Booth shoots Lincoln in the head shortly after 10:00p.m on April 14, 1865. At 7:22 the next morning the sixteenth president of the United States was pronounced dead. His assassin was shot and killed in a tobacco barn eleven days later, never being put on trial. On May fourth, 1865 Abraham Lincoln was laid to rest in Oak Ridge Cemetery, located near Springfield, Illinois. Although Lincoln was not alive to see it, Congress passed the Thirteenth Amendment to the United States Constitution on January 31, 1865 that abolished slavery. Bibliography http://www.whitehouse.gov/history/presidents/al16.html http://showcase.netins.net/web/creative/lincoln.html http://members.aol.com/RVSNorton/Lincoln2.html http://www.historyplace.com/lincoln/ http://www.siec.k12.in.us/~west/proj/lincoln/ Dilorenzo, Thomas J. The Real Lincoln: A New Look at Abraham Lincoln, His Agenda, and an Unnecessary War. Prima Publishing; March 26, 2002. Miller, William Lee. Lincoln's Virtues: An Ethical Biography. Knopf publishing; January 15, 2002. Senzell, Sally Isaacs. America in the Time of Abraham Lincoln: The Story of Our Nation. Heineman Library; January 2001.

Psychological effects on women victims of domestic violence Essay

Campbell, Jacquelyn el â€Å"Intimate Partner Violence and Physical health Consequences†. Archives of Internal Medicine 162i 10 Article 7 (2002) The research was: â€Å"Intimate Partner Violence and Physical Health Consequence† where researchers were examining how violence affects a woman’s short term as well long term physical wellbeing. This study explored the area of abused and non abused women assessed the two groups for physical problems. Abused cases, either physically and or sexually were 201. This research employed Abuse Assessment Screen in its measurements (Wisner, 1999). Measures of physical abuse was done via use of Miller physical symptom and injury scale, that requires a woman to ascertain whether she has been to a doctor or nurse due to any of the 25 conditions related to domestic violence (Wisner, 1999). The results showed that women suffered more physical disorders as a result of abuse (Wisner, 1999). Such disorders were found to include headaches, back pain, STD s, vaginal bleeding, vaginal infections, pelvic pain, painful intercourse, urinary tract infections, appetite loss, abdominal pain as well as digestive problems, long terms effects were found to occur due to recurring central nervous system signals such as headaches, back pain, fading and hallucinations (Wisner, 1999). Domestic violence is associated with problems of the cardiovascular system, high blood pressure among others The importance of this study is that it offers clue on how women are fatally threatened by domestic violence (Wisner, 1999). Diseases such as cardiovascular and blood pressure are among the serial killer diseases within the society (women). This study relates to this topic in that psychological effects are secondary to physical effects. For instance, where a woman gets her back broken as a result of domestic violence, even if the back heals she remains psychologically affected by the memories of this ordeal for the rest of her life (Wisner, 1999). Future implications of the study are that it is important for the public to be educated on matters relating to domestic violence. There is also the need to provide better medical attention to women of domestic violence, that is, there should be well trained physicians to deal with female patients involved in domestic violence (Wisner, 1999). This would mean increased costs on health planners (Wisner, 1999). Reference Wisner, C. , Gilmer, T. , Saltzman, L. , Zinc. T (1999). Intimate Partner Violence Against Women. Do victims cost health plans more? Journal of Family Practice, June.