ARK583 Structures IV UITM Assignment Sample Malaysia
ARK583 Structures IV course provides students with an in-depth exploration of the design and analysis of advanced structures. This course covers a wide range of topics, from methods for analyzing complicated structures to principles for designing safe and efficient structures. The course also covers topics such as building construction materials, types of connections, shear flow diagrams, and earthquake engineering principles.
Students are expected to be able to apply their knowledge to the practical challenges that are encountered when designing real-world structures. By the end of this course, students should have gained an understanding of both theoretical and practical aspects of structural design and analysis, ultimately helping them to become effective engineers.
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Here, we will delve into some assignment activities. Specifically:
Assignment Activity 1: Identify the application of steelwork in building construction.
Steelwork is widely used in building construction due to its strength, durability, and flexibility. It has the ability to span greater distances without relying on interior supports, making it an essential part of structural components in modern architecture. Steel can be a stable and reliable backbone of engineering projects like bridges and skyscrapers, as well as offer aesthetic advantages such as its sleek industrial finish, which is often featured throughout the external design of many contemporary buildings.
Steel has also been used to construct apartment blocks and other multi-story dwellings due to its strength against extreme weather conditions and seismic shifts. In both residential and commercial architecture, steel offers a cost-effective solution for engineering complex designs with little intervention from surrounding landscapes. Ultimately, steelwork provides a practical and impressive way for architects to achieve strong structural foundations for their creations.
Assignment Activity 2:Analyse the structural behavior of steel structures.
Steel structures are some of the most versatile, strong, and durable structures being used today. By examining their structural behavior, engineers gain a greater understanding of response during extreme conditions and design more structurally sound buildings. Studying the structural behavior of steel can involve an array of methods including finite element analysis simulations, strain gauges, and load tests in order to gather meaningful data from different loading configurations.
This data helps engineers better understand the complexities associated with these large-scale structures as well as make sure they are fully prepared for any sort of dynamic condition or loading scenario. With ongoing studies and developments being made by industry professionals worldwide, we are on the brink of uncovering remarkable new capabilities for steel structures going forward.
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Assignment Activity 3: Explain the behavior of soil in relation to the foundation.
Soil is an important factor to consider when discussing foundation. Depending on the region and climate, soil can dramatically alter the behavior of a structure built upon it. Different types of soils used in foundations may cause issues in terms of shrinkage or expansion due to moisture retention. Soils with high clay content are particularly prone to these changes; clay soils expand as they absorb moisture and reduce in volume with dehydration.
When these changes occur, they can place tremendous stress on a structure’s foundation due to shifts in pressure. This may cause movement in the foundation and result in cracks, therefore impacting overall structural integrity. By taking into consideration the type of soil used for a project’s foundation, engineers are better equipped to manage any risks associated with the material choice and maintain stability within their structures.
Assignment Activity 4: Identify factors that affect the choice of foundation.
There are a number of factors that influence the choice of foundation for any given project. The most important factor is the type and condition of the soil, which affects how much load it can bear before shifting or cracking. Additionally, engineers must consider the size, shape, weight, and distribution of the structure when selecting a suitable foundation.
The type of climate the structure is located in must also be taken into account, as extreme weather can lead to expansive and contractive forces that could damage the foundation. Furthermore, drainage considerations are important as waterlogging can cause erosion or settling of the soil. The composition of any nearby bodies of water should also be considered when making a decision about which type of foundation is best suited to the project. All of these factors must be taken into account and weighed carefully when selecting a suitable foundation for a structure.
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