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Lead-in. Look at the picture and answer the following questions:

Find the following terms and memorize their meaning. | COMPREHENSION CHECK | Text 2. Bridge Construction (According to the Types). | COMPREHENSION CHECK | VII. Make the precis of the text | V. Fill in the correct prepositions | COMPREHENSION CHECK | IV. Translate the words in brackets. | III. Match the meaning of the terms with their definition. | V. Fill the gaps with the suitable derivatives of the word given on the right. |


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  1. Lead-in
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Look at the picture and answer the following questions:

1. What type is the Firth of Forth Bridge?

2. What can it be used for?

Brief information:

Location:

South Queensferry and North Queensferry, Scotland

Completion Date: 1890

Cost: $15 million

Length: 8,276 feet

Type: Cantilever

Purpose: Railway

Materials: Steel

Longest Single Span: 350 feet (center span)

Engineer(s): Benjamin Baker, John Fowler

Despite its unusual appearance, the bridge that spans Scotland's Firth of Forth has a lot in common with the simplest and oldest bridge type: the post and beam bridge. In a post and beam bridge, solid ground or columns, called piers, on opposite banks of a river or gap support long horizontal beams, often with support from supplemental columns at regular intervals along the way. Similarly, the Forth Railway Bridge spans the waterway called the Firth of Forth. In one important and innovative way, however, the Forth Bridge, designed in the late 1800's by structural engineers Benjamin Baker and Sir John Fowler, is very different from a simple beam bridge. Whereas a beam bridge relies on the strength of the beam spanning the distance between columns to carry its own weight, as well as the loads generated by cars and trains that travel over it, the Forth Bridge uses a cantilever system to counteract the downward force generated between columns.

The two main beams that make up a cantilever bridge rest almost perfectly balanced on piers located part of the way across the span. One end of each beam is also anchored to the nearest bank, while the other end stretches toward the center of the span, like a diving board over a pool. These suspended ends are joined by a relatively lightweight connecting span.

The Forth Bridge's shape -- tall and busy with many angled supports in some areas, almost dainty in others -- results from the need to be both as strong as necessary and as light as possible.

The midsection of each beam that attaches to the piers and carries most of the beam's weight and its load must be very strong, so engineers increased the depth (or height) of the bridge in this location, making it resistant to bending even under extreme loads. In contrast, the connecting spans, which are supported entirely by the main beams they connect, are built minimally to be as light as possible. Such a design allows the Forth Bridge to span a much greater distance with many fewer vertical piers than a typical post and beam bridge would require.

Fast Facts:

· The Firth of Forth Bridge may not have been a bridge at all -- engineers considered building a tunnel, but abandoned the idea because it seemed too risky.

· The Firth of Forth was the first bridge built primarily of steel.

· It took 54,000 tons of steel; 194,000 cubic yards of granite, stone, and concrete; 21,000 tons of cement; and almost seven million rivets to build the Firth of Forth Bridge.

· The midsection of each beam that attaches to the piers and carries most of the beam's weight.


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