Showing posts with label Hazlitt. Show all posts
Showing posts with label Hazlitt. Show all posts

Tuesday, December 13, 2011

Deductive vs Inductive Reasoning

Deductive reasoning is exemplified by formulating conclusions based on logic rooted in firm, true, fundamental facts (axioms).  For instance, a person sees a winged animal. The person concludes the animal can fly based on that evidence.  This conclusion has a high probability of being correct and is an exercise in deductive reasoning.

What is inductive reasoning?  Inductive reasoning takes observational evidence and reverse engineers the situation to find a likely cause.  Let us look at the winged animal example from a different angle.  Suppose the person sees the same animal high above in the sky, too high to see the animal's wings.  The observer now concludes, based on the evidence, that the animal must have wings.  Again, this conclusion is highly probable, but the person would only know absolutely if the animal landed or flew at a lower altitude.

So, what is the purpose for comparing and contrasting these two types of logical reasoning?  I have heard it suggested by opposing groups that these two approaches are mutually exclusive to such a degree that only one or the other is valid in certain situations.  It is here where my opinion differs.

The approaches are mutually exclusive for the most part (there is an exception)*, but deductive and inductive reasoning are necessarily complementary in most practical problem solving scenarios.  This is the origin of my dissent.  Let me give an example.

Imagine a mechanic that starts a new job in a factory.  Let us track his approaches to problem solving as he gains more and more experience.

In the beginning, the mechanic has little knowledge about the factory's machinery.  He relies primarily on the knowledge of those men or women with more experience to provide him with the solutions to the most common problems they have encountered. 

If the mechanic is an independent person, he will, before asking anyone, try to diagnose the problems with the machinery through inductive reasoning.  If something is getting hot, he will inductively construct reasons to explain the problem such as friction or faulty electrical equipment.

Suppose the overheating is a rare problem and his peers have no advice.  The man has no choice but to approach the problem by taking the machine apart and exploring the parts.  Here the mechanic learns fundamental information about the workings of the machinery, all while investigating the validity of his hypotheses concerning the overheating.

He uses the fundamental information about the parts of the machine, which parts move, which are static, etc. and employs deductive reasoning to narrow his search.  He soon finds some worn bearings, a part many mechanics would likely suspect.  He concludes the heat was caused by friction.

Awe! His inductive reasoning was correct.  In addition, however, his deductive reasoning was just as handy.  Both types of logical reasoning were equally important in his fixing the machine.

I would argue that the mechanic's tandem use of deductive and inductive reasoning is the most efficient method to solve problems.  That is to say, it is important to weigh probable inductive scenarios against a foundation of fundamental knowledge, and allow deductive reasoning, based on that knowledge, to converge with the likely scenarios.

In other words, the likeliness of any one inductive scenario can be limited with good fundamental knowledge.  For example, suppose the mechanic took apart the machinery and noticed that no electrical equipment was near the area where the overheating occurred.  This fundamental knowledge immediately reduced the probability of electrical overheating to zero.

In the real world, the number of inductive speculations that should be considered can and must be practically limited by eliminating improbable scenarios based on a foundation of fundamental knowledge.

So, the lesson to be learned here is that gaining fundamental knowledge is very important to efficient problem solving by sharpening one's ability to formulate probable inductive scenarios.  Always start with the fundamentals!



*Exception:  Using the winged animal example from above, the person sees the animal up close and notices the wings.  The person goes on to conclude that the animal has wings.  Although this seems like a silly example, it is the only type of situation where deductive and inductive reasoning are equivalent.

A Practical Tax Plan: A Plan for Efficiency and Transparency

The income tax we pay to government is part of a system that produces the least accountability for politicians in Washington D.C.  The generic label "income tax" is a disguise  that hides from American citizens where there money is being spent.  So, what should be done?  Below, I outline a plan which returns more power to the citizenry and increases the accountability of elected officials.

Plan to Increase Transparency in the Tax System (PITT)

I will suggest to you that this is not a very difficult proposition.  Of course, it is up to me to convince you of this.

Suppose you receive your paycheck and on the check stub there is a list of taxes in decreasing order of the top ten expenditures of where that tax money will ultimately been spent, what would be the consequences on the American tax payer and on the federal government?

Scenario:

John Smith, after being in such a tax system for some time, picks up his paycheck.  He has noticed that on the news, the U.S. government has invaded a small country in Africa and realizes that, as a result, defense spending must increase. 

Well, in the PITT system, there exists a mandate that the tax appropriations represented on the check stub must necessarily fluctuate with government spending. 

Returning to John Smith, he notices all of the sudden that the category "Defense Spending" has increased by a large portion (although his actual tax burden may be similar as before).  A light bulb appears above Mr. Smith's head.

Hmm... Mr. Smith thinks as the rolls of news flash through his head of the new invasion. 

I leave you to imagine any particular outcome.  However, a large number of "John Smith's" would become concerned and take this information into account the next time he enters a voting booth.

The PITT system returns power back to American citizens.  We must hold our politicians accountable!

In addition, I will add that very few taxes should be levied as an income tax.  Taxes should be generated by user taxes as much as possible, such as tolls on turnpikes.  People that actually use the service pay for its convenience.  However, national defense is a tax that must be levied on the entire population because we all benefit (or suffer) similarly.

Do not allow the U.S. government to continue to disguise the taxes under the alias "income tax."

Please leave comments.  Your constructive criticism and suggestions are welcomed.