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The Finger Plan (Danish: Fingerplanen) is an urban plan from 1947 which provides a strategy for the development of the Copenhagen metropolitan area, Denmark. According to the plan, Copenhagen is to develop along five 'fingers', centred on S-train commuter rail lines, which extend from the 'palm', that is the dense urban fabric of central ...
Christian Erhardt Bredsdorff, commonly known as Peter Bredsdorff, (1913–1981) was a Danish architect and urban planner who is remembered for his Finger Plan for the development of Copenhagen. In this connection, his name is included in the Danish Culture Canon. [1] [2]
The 'finger-plan' of Copenhagen. The new light rail will connect most of the 'fingers'. Currently the rapid transit network of greater Copenhagen consists of a metro system serving the city centre, south-eastern suburbs and one western suburb, and a well-developed S-train network consisting of radial lines and one inner ring line relatively close to the city centre.
[1] This is a list of the eleven Danish provinces and the regions they belong to. There are five regions (EU standard NUTS 2) and eleven provinces (EU standard NUTS 3). The provinces Copenhagen City and Copenhagen surroundings are largely build up areas, the same applies also for large parts of East Zealand and North Zealand.
36 represented in chisanbop, where four fingers and a thumb are touching the table and the rest of the digits are raised. The three fingers on the left hand represent 10+10+10 = 30; the thumb and one finger on the right hand represent 5+1=6. Counting from 1 to 20 in Chisanbop. Each finger has a value of one, while the thumb has a value of five.
The Danish Town Planning Institute (Danish: Dansk Byplanlaboratorium) is an independent, self-owned institution based in Copenhagen, Denmark. It arranges the annual Danish Town Planning Conference and has instituted the Danish Urban Planning Award in collaboration with the Architects' Association of Denmark. The institute also arranges courses ...
If the answer is greater than a single digit, simply carry over the extra digit (which will be a 1 or 2) to the next operation. The remaining digit is one digit of the final result. Example: 316 × 12 {\displaystyle 316\times 12}
For single digit numbers simply duplicate the number into the tens digit, for example: 1 × 11 = 11, 2 × 11 = 22, up to 9 × 11 = 99. The product for any larger non-zero integer can be found by a series of additions to each of its digits from right to left, two at a time.
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