Bridge Structures and The Use of Geometry in Their Design What is a bridge? A bridge is a structure providing continuous passage over a body of water‚ roadway‚ or valley. Every bridge looks different from the another. Their bridge structure is different. There are nine types of main bridges. Bridge engineers use a lot of geometry to help them design the different bridges. Without geometry‚ the bridges would not be safe. Bridges have been around for a long time. The earliest bridges
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When people in the United States today hear the term "London Bridge‚" they are most likely to think of one of the most peculiar sights anywhere within the United States that of the London Bridge in Lake Havasu City‚ Arizona. Surrounded by faked-up Tudor buildings and busloads of tourists‚ the large bridge is dwarfed by the majesty of the desert Southwest. The entire enterprise stands as a monument to a deep human appreciation for irony‚ for what else could explain the immense cost and energy that
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Suspension Of all the bridge types in use today‚ the suspension bridge allows for the longest spans. At first glance the suspension and cable-stayed bridges may look similar‚ but they are quite different. Though suspension bridges are leading long span technology today‚ they are in fact a very old form of bridge. Some primitive examples of suspension bridges use vines and ropes for cables. Typical Span Lengths 70m - 1‚000m+ World’s Longest Akashi Kaikyo Bridge‚ Japan Total Length 3‚911m
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“BROOKLYN BRIDGE” The Brooklyn Bridge’s construction is one of the great achievements in United States history and helped pave the way for New York City’s rapid expansion in the 19th and 20th centuries. It was an undertaking that required extraordinary effort‚ sacrifice and ingenuity by its designers as well as its builders to complete. Its completion was a feat of engineering that was unmatched in its time: it was the longest suspension bridge – the first to use steel-wire – and dominated the New
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railway bridges because it made good use of iron. The Pratt has many variations‚ most with their own unique name. For instance‚ the Baltimore‚ Pennsylvania‚ and the Parker are all based off the Pratt. Pratt Truss How the forces are spread out Here are two diagrams showing how the forces are spread out when the Pratt Truss is under a load. The first shows the load being applied across the entire top of the bridge. The second shows a localized load in the center of the bridge. In both
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The Bridge: Synopsis In 1970‚ Antonello is 22 years old and recently married. He has been working on the Westgate Bridge for almost 2 years and loves his job. Like many of his workmates‚ Antonello is proud of the bridge. He believes it is going to be more spectacular than the Sydney Harbour Bridge‚ that it is going to bring the city together and that they‚ the bridge builders‚ will be remembered for years to come. On the 15th October 1970 the Westgate Bridge collapses during construction and thirty-five
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decided to trespass on to California’s highest bridge‚ and take a selfie. In the process of taking a selfie‚ the unidentified woman accidentally fell sixty feet of the Foresthill Bridge‚ landing on a trail below. Paul Goncharuk‚ a friend says “they we’re taking a picture on the bridge‚ and then the big bolts that are holding the beams together‚ she stepped on them kind of weirdly and lost balance and fell backwards”. The Foresthill bridge is the highest bridge in the state of California‚ and measures to
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Abstract- The development of De-Sauty’s bridge for capacitance measurement has been followed by various modifications and improvements in the original circuit. Lately Schering bridge and transformer ratio arm bridge have been used for measurement of capacitance in a circuit.Today there is instrumentation available that makes use of these bridges in real life such as that can measure the quality of electrical insulation at power frequency as well as in touch-sensitive sensors. This paper
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What factors affect the bending of bridges? Abstract: This experiment was designed and conducted to find out how different factors affect the amount of bending of the beam. The two variables that were tested were the amounts of weight and the position of the weight on the plank. Aim: To find out how weight and different placements of the weight affect the bending of the beam. Hypothesis: It is predicted that the wood will bend more if there is more weight on it. When the weight is positioned
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2/4/2013 Bridge improvements Building a bridge was trial and error. This is not something you can do over night. When building the bridge I have to focus on the structure‚ details and actually putting it together right. The structure of my frame I made with the thicker wood‚ but it should have been placed different. Looking at the data from testing other bridges‚ the bridges who double bonded their wood at the bottom last a lot longer that the one piece of wood. My bridge failed when one
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