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Gadgets with a Sporting Chance Consumer electronics: New sports equipment, from tenni

s rackets to running shoes, uses processing power to enhance performance. Is that fair? Why should aspiring athletes stand on the sidelines when a spot of electronic assistance can put them in the middle of the game? That is the question many sports-equipment makers are asking as they sense an opportunity to boost their sales with high-tech products. You could call it the revenge of the nerds: a new wave of microchip-equipped sporting goods promises to enhance the performance of novices and non-sporting types alike--and could even make difficult sports easier. Take cross-country skiing. Victor Petrenko, an engineer at Dartmouth Colleges Ice Research Lab in New Hampshire, has invented some smart ski-brakes that, he believes, will increase the popularity of cross-country skiing by making the sport less challenging for beginners. The brakes, currently being tested by a ski manufacturer in the Alps, offer the necessary friction for a bigger "kick-off force" and make the skis less likely to slide backwards in their trucks. To make this happen, an electric current from the bottom of the skis pulses through the ice, melting a thin layer of snow that instantly refreezes and acts as a sort of glue. This is not the only form. of smart ski to hit the slopes. Atomic, a leading ski-maker based in Austria, plans to introduce a system later this year that runs a diagnostic safety check to ensure that the ski binding is properly closed, with the result being shown on a tiny built-in liquid-crystal display. Meanwhile, tennis equipment manufacturers are hoping that innovation will bring new zip to their business as well. They certainly need to do something: according to Sport ScanInfo, a market-research firm based in Florida, sales of tennis rackets in America fell 12.5% during the first half of 2004 compared with the first half of 2003. With the ball clearly in their court, researchers at Head, a maker of sporting equipment, have devised a product that should appeal to players suffering from tennis elbow. A chip inside the racket controls piezo-electric fibres, which convert mechanical energy from the balls impact into electrical potential energy. This energy is then used to generate a counter-force in the piezo-electric fibres that causes a dampening effect. All of this, the firm says, translates into less stress on the elbow. Head claims that residual vibrations in the racket are dampened twice as fast as in conventional rackets, reducing the shock experienced by the players arm by more than 50%. No doubt purists will object that this is simply not cricket. Rule-makers in many sports are now being forced to consider the implications of equipment that promises to augment athletes performance with electronic muscle. The International Tennis Federation, that body is responsible for setting the rules of the game, has specified in its most recent guidelines that "no energy source that in any way changes or affects the playing characteristics of a racket may be built into or attached to a racket". Yet despite such wording, the guideline does not actually eliminate the use of Heads smart rackets, because there is no external energy source---the damping effect relies solely on energy from the balls impact. Though high-tech equipment may cause controversy on the court, tennis clubs have to adhere to the guidelines set for the sport, explains Stuart Miller, the ITFs technical manager. And if the rules allow self-generated forces to modify a rackets response, so be it. A Different sports have encountered different technologies, though the future will undoubtedly bring more overlap. B In golf, gadgets that pinpoint the location of the green using the Global Positioning System (GPS), C The rule-making body of the Royal and Ancient Golf Club of St. Andrews, which oversees the game in all countries except America and its dependencies, currently prohibits the use of distance-measuring devices. D As a result, golfers cannot rely on GPS aids in a tournament. While technological innovation in golf equipment should continue, the players skill should remain the predominant factor, says David Rickman, who is in charge of the clubs rules and equipment standards. The trend towards high-tech assistance is not limited to sports with a reputation for expensive gear, however. Even runing, that most basic of sports, provides scope for electronic enhancement. The Adidas running shoe, which is due to be launched in December, incorporates a batterypowered sensor that takes about 1,000 readings a second. A microprocessor then directs a tiny embedded electric motor to adjust the characteristics of the sneaker, enableing it to change the degree of cushioning depending on the surface conditions and the wearers running style. and foot position. The race for the smartest use of microchips in sporting equipment, it seems, has begun.

The word novices in paragraph 1 is closest in meaning to

A.beginner.

B.nerd.

C.sales.

D.listener.

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更多“Gadgets with a Sporting Chance Consumer electronics: New sports equipment, from tenni”相关的问题

第1题

独立样本t检验在SPSS中的操作步骤顺序是 ①选择检验变量 ②执行命令:“分析”→“比较均值”→“独立样本T检验” ③置信区间采用系统默认方式 ④点击“确定”,执行操作 ⑤选择分组变量并定义组别

A.②①⑤③④

B.②①⑤④③

C.②①④⑤③

D.②①③⑤④

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第2题

单样本t检验调用SPSS的路径为“分析—一比较均值——单样本t检验”。
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第3题

单样本t检验spss操作中的步骤包括()。

A.建立数据库(分析资料)

B.正态性检验

C.单样本t检验(解读结果)

D.以上都正确

E.以上都不正确

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第4题

下列属于检验两个独立样本t检验的步骤的是()

A.陈述假设

B.确定检验方向

C.确定考验的自由度

D.对两独立样本进行方差同质性检验

E.比较临界t分数和实际t分数

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第5题

【简答题】请简述两独立样本t检验的目的、前提和实现步骤。
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第6题

SPSS软件总体均值区间估计的两个途径中,“分析”—“比较均值”—“单样本T检验”能够提供T值。()

SPSS软件总体均值区间估计的两个途径中,“分析”—“比较均值”—“单样本T检验”能够提供T值。()

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第7题

借助SPSS中的独立样本T检验法进行项目分析时,将量表题目作为______________变量,将高低分组作为______________变量。(请将回答用逗号隔开)
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第8题

教育统计中常用的t检验有哪些类型?

A.单样本t检验

B.独立样本t检验

C.配对样本t检验

D.独立配对样本t检验

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第9题

根据消防法规要求,消防器材的检查实行月检制,即每月检查一次。()

此题为判断题(对,错)。

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