Thursday, November 21, 2019
Changes in the Field of Civil Engineering Essay
Changes in the Field of Civil Engineering - Essay Example The aim of this report is to explore the changes that are occurring in the rhetorical practices in the field of civil engineering. Globalization, the computer evolution, population demand, scientific advancements as well as the growing concern for environmental and security in the field of material science, biotechnology, and nanotechnology are the key drivers of the changes. As the changes continue to emerge, students need to adapt, adjust and conform to the changes by acquiring more knowledge about the field that they otherwise would in the past. The adjustments need not only to be in the traditional sciences and math, but also to encompass emerging domains in engineering and science and knowledge in crucial areas such as leadership, communication, marketing, business management, and practical processes. In addition, students must be able to learn how to come up with innovative designs that are required for maintaining and enhancing the competitive advantage with respect to other n ations, and be able to prepare adequately to accomplish emerging professional challenges. Therefore, there is an urgent need to expand and improve civil engineering education (CEE), including professional innovators such as civil engineers with skills and knowledge required to develop novel designs, which can be patented. Over the past six decades, the United States has witnessed a significant reduction in the number of credit hours required for a bachelorââ¬â¢s degree in civil engineering. In fact, at present, Americaââ¬â¢s average hours stands at about 125 credit hours only. (Arciszewski and Russell 5). This is a huge reduction considering the fact that just decade ago, the U.S. average credit hours for a bachelorââ¬â¢s degree in engineering took an average of 135 hours. This emerging trend is, particularly driven by state funded universities, which are increasingly heeding to political pressure to reduce the cost incurred in undergraduate education, as well as to ensure that civil engineering students graduate in four years. It is also unfortunate that even private universities are increasingly adopting this trend in a bid to remain competitive. Presently, civil engineering education in the country is struggling with the blatant contradiction between the national, state, and local level needs, according to Arciszewski and Russell (5). The aim of this report is to explore the changes that are occurring in the rhetorical practices in the field of civil engineering. The field of civil engineering has undergone many changes over the years. This has seen most paradigms being replaced by the emerging concepts. As earlier stated, the changes that have occurred in the field of civil engineering are attributed mainly to the rapid technological advancements and globalization being witnessed in different parts of the world today. This has necessitated students to adjust in their learning in order to keep pace with the changing needs of the world in the field of civil engineering. According to Arciszewski and Russell, the engineering system evolution is driven by objective evolutionary techniques, known as patterns of evolution (8). They argue that this pattern applies to all engineering fields, including CEE and practice. Many studies that dates back to the 1940s found nine patterns of evolution in the field of engineering. However, the S-curve pattern is the most relevant in CEE. According to the S-curve pattern, engineering systems have undergone transformations following an S-curve pattern, when the relationship between time and specific characteristics of an engineering system are both taken into consideration. This implies that each engineering system has a life cycle that once completed give rise to another system based on different assumptions or different paradigm, as shown in figure 1. For example, when we consider airplanes, we realize that there are separate S-curves for propeller-driven airplanes, jet planes, and turbo-prope ller planes. In this regard, we end up with a family
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