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Stopping In Thin Air

Imagine you're going very fast -- much faster than a race car. In fact, imagine you're going 100 or 200 times faster than a race car. When you reach your destination, you need to stop relatively quickly. How would you do it? It wouldn't take a rocket scientist to think of using the brakes. But, it might take a rocket scientist to skip the brakes, ...

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StoppingInThinAir
Astronomy

Introduction To Jupiter

With its numerous moons and several rings, the Jupiter system is a 'mini-solar system.' Jupiter is the most massive planet in our solar system, and in composition it resembles a small star. In fact, ... Continue reading

IntroductionToJupiter
Physics

How Fast is Mach 1?

A Mach number is a common ratio unit of speed when one is talking about aircrafts. By definition, the Mach number is a ratio of the speed of a body (aircraft) to the speed of sound in the undisturbed ... Continue reading

Mach1
Astronomy

The Constellations

The random arrangement of the stars visible to the naked eye has remained essentially unchanged since the time of the first written records. One of the earliest complete lists we have was compiled in ... Continue reading

TheConstellations
Engineering

Nothing Backwards About It

Almost anyone who's seen a picture of the experimental X-29 aircraft will remember it. Its unique wings make it one of the most distinctive aircraft designs ever. Rather than sticking straight out or ... Continue reading

NothingBackwardsAboutIt

What Is pH?

WhatIspHAnyone who is the least bit familiar with vinegar, nausea, sodium bicarbonate, and ammonia-based cleaning solutions probably has a very good 'feel' for the different natures of acidic and basic solutions. But what the heck is 'pH' all about? To understand that one first has to know what makes a solution acidic or basic. The water molecule, H2O (or H-OH) can separate into H+ (hydrogen ion, or hydronium ion when dissolved in water), and OH- (hydroxide ion). When this happens, equal quantities of H+ and OH- are produced and the solution remains neutral. But since acidic and basic solutions are most decidedly not neutral, something else is involved in those cases. Materials that act to increase the amount of H+ relative to OH- in a solution are called acids, while those that act to increase the relative amount of OH- in a solution are called bases.

To get to a good understanding of pH, one has also to understand the concept of the 'mole' (not the rodent, but the material quantity...). A mole of any substance is defined as an amount of that substance whose weight in grams has the equivalent value of the molecular or atomic weight of that substance. For example, the compound known as water, H2O , has a molecular weight of 18 atomic mass units; one mole of water therefore weighs 18 grams. The mole concept allows us to define concentrations of materials in solutions in terms of 'molarity', the number of moles of a particular material in each liter of the solution. The pH scale allows us to describe acid and base concentrations in an accurate manner, and to carry out concentration change calculations very easily.

Whatever the concentration of H+ ions in the solution, the pH is just the negative value of the base 10 logarithm of that concentration. In neutral water, the [H+] is 0.0000001, or 10-7 Molar, so the pH is 7. Now suppose we were to add a small amount of an acid such as hydrochloric acid, HCl; just enough to make the H+ concentration 0.000001, or 10-6 Molar. The pH would now be 6, and there would be ten times more H+ in the solution, and it is therefore ten times more acidic than water. Clearly, the smaller the pH value, the more acidic is the solution. Basic solutions work the same way, only backwards. Suppose a small amount of a basic material were to be added to neutral water; just enough to leave only one-tenth of the H+ ions. The [H+] would now be 10-8 Molar, and the pH would be 8. Adding more OH- decreases the [H+] accordingly. Thus the higher is the pH value, the more basic is the solution.