Overengineering

December 4, 2012

“Overengineering” is anathema to most product manufacturers. Generally, manufacturers desire to put no more time and money into a product than is necessary. They decide upon a reasonable lifespan for a product, and then they use materials and parts that, with rare exception, have been proven to last that long.  They do not care to produce a product that lasts longer than the consumer desires; they do not want to invest resources where they won’t see a return.

An exception to this general rule is invoked by those manufacturing products which, if they break, will kill or maim people.  Airplanes are the classic example:  they’re built with multiple redundancies and with materials and parts that have been tested to last much longer than necessary. The potential for catastrophic loss of life demands this. They will use a part that’s tested to last 20 years, and replace it after ten years just to be safe.

I suspect that some observers of the MHSAA’s recent campaign to increase sports safety training for coaches and modify playing rules that may endanger participants are critical that we’re asking too much, that we’re doing more than is necessary. But frankly, that’s exactly what we intend.  When it comes to participant safety, overengineering of policies and procedures ought to be our goal.

Rocket Science

January 5, 2015

I have always been fascinated by space exploration and in awe of all that is required and must go right to send a space vehicle atop a multi-stage booster rocket from a moving object like Earth, and land it softly on another moving object like the moon or Mars or most recently a massive rock, after a journey of many months and millions of miles. How can people figure that stuff out?

There cannot be a problem of school sports that is more complicated than those of space exploration, except for one feature – which is that our problems deal with people, who are far less predictable and dependable than the laws of physics.

Making matters worse is that we are working with people in a competitive arena, and in an emotional setting, where the objectivity which characterizes the scientific method of rocket scientists is generally if not universally absent.

As long as potential problem-solvers view potential solutions through the lens of what does or does not benefit them in terms of competitive edge, our efforts to make good changes will never launch or, if launched, will miss the target.