wunder · Library
How to Become a Scientist cover

How to Become a Scientist

by Aaron A. Warford

By Aaron A. Warford · Science · Public domain

Start reading free → Jump to chapter 1

About this book

How to Become a Scientist is a public-domain classic of science by Aaron A. Warford.

The complete text is on this page and the chapter pages below — all 22 chapters, about 30,462 words (~3 hours of reading), free to read online with no signup.

How to Become a Scientist at a glance

Author
Aaron A. Warford
Length
30,462 words · about 3 hours to read
Chapters
22
Price
Free — public domain

Learn more about science

Short, fact-checked Wunder courses related to How to Become a Scientist — free to read, no signup. Or browse every course.

Food preservation science chemistryFood doesn't spoil on its own — it gets eaten, by microbes and by its own enzymes. This course reveals the single idea behind every preservation…45 min courseFood Chemistry & Culinary ScienceCooking is chemistry you can eat. This course teaches the handful of reactions underneath every dish — how heat moves and why water caps browning…45 min courseThe Principles of Biology, Volume 1Read Herbert Spencer's ambitious synthesis of matter, metabolism, development, adaptation, and evolution, then test its nineteenth-century mechanisms…20 min courseRoller Coasters: The Physics of FunThe real physics behind the thrills: how the first hill stores energy, what g-forces do to your body, why loops are teardrops not circles, how…20 min courseIntro to ChemistryFrom atoms and the periodic table to bonds, reactions, and the chemistry hiding in your kitchen.30 min courseEvolution ExplainedDescent with modification: how life diversifies through natural selection.15 min course

Read How to Become a Scientist online — full text

Part 1

Transcriber’s Notes:

Text enclosed by underscores is in italics (italics), text enclosed by equal signs is in bold (=bold=), and _{} encloses subscripted material.

The whole number part of a mixed fraction is separated from the fractional part with -, for example, 2-1/2.

Additional Transcriber’s Notes are at the end.

How to Become a Scientist.

GIVING Interesting and Instructive Experiments IN CHEMISTRY, Mechanics, Acoustics AND PYROTECHNICS.

ALSO CONTAINING MATHEMATICAL PROBLEMS and PUZZLES BOTH USEFUL AND AMUSING.

NEW YORK: FRANK TOUSEY, Publisher, 24 UNION SQUARE.

* * * * *

Entered according to Act of Congress, in the year 1900, by

FRANK TOUSEY,

in the Office of the Librarian of Congress at Washington, D. C.

How to Become a Scientist.

Chemistry, optics, pneumatics, mechanics, and mathematics, all contribute their share towards furnishing recreation and sport for the social gathering, or the family fireside. The magical combinations and effects of chemistry have furnished an almost infinite variety of pleasant experiments, which may be performed by our youthful friends with great success if a little care be taken; and the other branches of natural science are nearly as replete with interest.

The following repertoire of such tricks and illusions will be found exceedingly complete, although pains have been taken to select only the best and most startling of them. A large number are entirely new, but are described with sufficient clearness to enable any person of ordinary intelligence to become expert in them, with a little practice.

Chemical Amusements.

Chemistry is one of the most attractive sciences. From the beginning to the end the student is surprised and delighted with the developments of the exact discrimination, as well as the power and capacity, which are displayed in various forms of chemical action. Dissolve two substances in the same fluid, and then, by evaporation or otherwise, cause them to reassume a solid form, and each particle will unite with its own kind, to the entire exclusion of all others. Thus, if sulphate of copper and carbonate of soda are dissolved in boiling water, and then the water is evaporated, each salt will be reformed as before. This phenomenon is the result of one of the first principles of the science, and as such is passed over without thought; but it is a wonderful phenomenon, and made of no account, only by the fact that it is so common and so familiar.

It is by the action of this same principle, “chemical affinity,” that we produce the curious experiments with

Sympathetic Inks.

By means of these, we may carry on a correspondence which is beyond the discovery of all not in the secret. With one class of these inks, the writing becomes visible only when moistened with a particular solution. Thus, if we write to you with a solution of the sulphate of iron, the letters are invisible. On the receipt of our letter, you rub over the sheet a feather or sponge, wet with a solution of nut-galls, and the letters burst forth into sensible being at once, and are permanent.

2. If we write with a solution of sugar of lead, and you moisten with a sponge or pencil, dipped in water impregnated with sulphureted hydrogen, the letters will appear with metallic brilliancy.

3. If we write with a weak solution of sulphate of copper, and you apply ammonia, the letters assume a beautiful blue. When the ammonia evaporates, as it does on exposure to the sun, the writing disappears, but may be revived again as before.

4. If you write with the oil of vitriol very much diluted, so as to prevent its destroying the paper, the manuscript will be invisible except when held to the fire, when the letters will appear black.

5. Write with cobalt dissolved in diluted muriatic acid; the letters will be invisible when cold, but when warmed they will appear a bluish green.

We are almost sure that our secrets thus written will not be brought to the knowledge of a stranger, because he does not know the solution which was used in writing, and, therefore, does not know what to apply to bring out the letters.

To Light a Candle Without Touching the Wick.

Let the candle burn until it has a good long snuff; then blow it out with a sudden puff, a bright wreath of white smoke will curl up from the hot wick. Now, if a flame be applied to this smoke, even at a distance of two or three inches from the candle, the flame will run down the smoke and rekindle the wick in a very fantastic manner. To perform this experiment nicely, there must be no draught or “banging” doors while the mystic spell is rising.

Magic Milk.

Part 2

Lime-water is quite transparent, and clear as common spring water; but if we breathe or blow into it, the bright liquid becomes opalescent and as white as milk.

The best way to try this simple experiment is to put some powdered quicklime into a wine bottle full of cold water; shake them well together, now and then, for a day; then allow the bottle to remain quiet till the next day, when the clear lime-water may be poured off from the sediment. Now fill a wine-glass or tumbler with the lime-water thus made, and blow through the liquid with a glass tube, a piece of new tobacco-pipe, or a clean straw, and in the course of a minute or so--as the magicians say--“the water will be turned into milk.” By means of this pastime “Wise Men” can ascertain which young ladies are in love and which young gentlemen are not. With a shrewd guess they present, as a test, a glass of lime-water to the one and of pure water to the other, with unerring effect.

The Mimic Vesuvius.

This experiment is a demonstration of the heat and light which are evolved during chemical combination. The substance phosphorus has a great affinity for oxygen gas, and wherever it can get it from it will, especially when aided by the application of heat. To perform this experiment, put half a drachm of solid phosphorus into a Florence oil-flask, holding the glass slantingly, that the phosphorus may not take fire and break the glass; pour upon it a gill and a half of water, and place the whole over a tea-kettle lamp, or any common lamp filled with spirits of wine; light the wick, which should be about half an inch from the flask; and as soon as the water is boiling hot, streams of fire, resembling sky-rockets, will burst at intervals from the water; some particles will also adhere to the sides of the glass, immediately displaying brilliant rays, and thus continue until the water begins to simmer, when a beautiful imitation of the aurora borealis will commence and gradually ascend until it collects into a pointed cone at the mouth of the flask; after a half a minute, blow out the flame of the lamp, and the apex of fire that was formed at the mouth of the flask will rush down, forming beautiful illumined clouds of fire, rolling over each other for some time; and when these disappear, a splendid hemisphere of stars will present itself. After waiting a minute or two, light the lamp again, and nearly the same phenomena will be displayed as at the beginning. Let a repetition of lighting and blowing out the lamp be made for three or four times, so that the number of stars may be increased; and after the third or fourth act of blowing out the lamp, the internal surface of the flask will be dry. Many of the stars will shoot with great splendor from side to side, while others will appear and burst at the mouth of the flask. What liquid remains in the flask will serve for the same experiment three or four times, without adding any water. Care should be taken, after the operation is over, to put the flask in a cool and secure place.

The Real Will-o’-the-Wisp.

Into a small retort place about an ounce of strong liquor of potash; that is, pure potash dissolved in water, together with about a drachm of phosphorus. Let the neck or beak of the retort dip into a saucer of water, say half an inch deep; now very gently heat the liquid in the retort with a spirit-lamp until it boils. In a few minutes the retort will be filled with a white cloud; then the gas generated will begin to bubble at the end of the saucer; a minute more, each bubble, as it issues from the boiling fluid, will spontaneously take fire as it comes into the air, forming at the same time the philosopher’s ring of phosphoric acid. Care is required in handling phosphorus; but our young chemical readers will, we think, not forego this wonderful experiment for the want of due attention; for, without proper care on their part, we must give up showing them wonders even greater than these.

Continue reading How to Become a Scientist free in the Wunder reader →

Contents — all 22 chapters

More free classics to read

More by Aaron A. Warford

How to Stuff Birds and AnimalsAaron A. WarfordHow to Become an InventorAaron A. WarfordHow to Tell FortunesAaron A. Warford

More Science in the library

Medical Investigation in Seventeenth Century EnglandCharles W. BodemerThe 1893 Duryea Automobile in the Museum of History and TechnologyDonald H. BerkebileBenign Stupors: a Study of a New Manic-Depressive Reaction TypeAugust HochLaboratory Manual of Glass-BlowingFrancis C. FraryPleistocene Bats From San Josecito Cave, Nuevo Leon, MexicoJ. Knox Jones

The Wunder Library · Learn anything · Home — complete public-domain books, free to read, with narration and illustrations. How to Become a Scientist is in the public domain.

© 2026 Wunder Learning LLC · Terms & Privacy