Endless Amusement: A Collection of Nearly 400 Entertaining Experiments in Various Branches of Science; Including Acoustics, Electricity, Magnetism, Arithmetic, Hydraulics, Mechanics, Chemistry, Hydrostatics, Optics; Wonders of the Air-Pump; All the Popular Tricks and Changes of the Cards, &c., &c. to Which is Added, a Complete System of Pyrotechny; Or, the Art of Making Fire-works. — John Shaqi
Endless Amusement: A Collection of Nearly 400 Entertaining Experiments in Various Branches of Science; Including Acoustics, Electricity, Magnetism, Arithmetic, Hydraulics, Mechanics, Chemistry, Hydrostatics, Optics; Wonders of the Air-Pump; All the Popular Tricks and Changes of the Cards, &c., &c. to Which is Added, a Complete System of Pyrotechny; Or, the Art of Making Fire-works.Unknown
Science
Endless Amusement: A Collection of Nearly 400 Entertaining Experiments in Various Branches of Science; Including Acoustics, Electricity, Magnetism, Arithmetic, Hydraulics, Mechanics, Chemistry, Hydrostatics, Optics; Wonders of the Air-Pump; All the Popular Tricks and Changes of the Cards, &c., &c. to Which is Added, a Complete System of Pyrotechny; Or, the Art of Making Fire-works.
Dissolve 100 grains of mercury by heat, in an ounce and a half of
nitric acid. This solution being poured cold upon two measured ounces
of alcohol previously introduced into any convenient glass vessel, a
moderate heat is to be applied, till effervescence is excited. A white
fume then begins to appear on the surface of the liquor, and the
powder will be gradually precipitated when the action ceases. The
precipitate is to be immediately collected on a filter, well washed
with distilled water, and cautiously dried in a heat not exceeding
that of a water-bath. Washing the powder immediately is material,
because it is liable to the re-action of the nitric acid; and, while
any of the acid adheres to it, it is very subject to the action of
light. From 100 grains of mercury, about 130 of the powder are
obtained.
This powder, when struck on an anvil with a hammer, explodes with a
sharp stunning noise, and with such force as to indent both hammer and
anvil. Three or four grains are sufficient for one experiment.
_The Iron Tree._
Dissolve iron filings in aqua fortis, moderately concentrated, till
the acid is saturated; then add to it gradually, a solution of fixed
alkali, (commonly called oil of tartar per deliquum.) A strong
effervescence will ensue, and the iron, instead of falling to the
bottom of the vessel, will afterwards rise so as to cover the sides,
forming a multitude of ramifications heaped one upon the other, which
will sometimes pass over the edge of the vessel, and extend themselves
on the outside, with all the appearance of a plant.
_To make any Number divisible by Nine, by adding a Figure to it._
If (for example) the number named be 72,857, you tell the person who
names it to place the number 7 between any two figures of that sum,
and it will be divisible by 9; for if any number be multiplied by 9,
the sum of the figures of the product will be either 9, or a number
divisible by 9.
_Arithmetical Squares._
An arithmetical magical square consists of numbers so disposed in
parallel and equal lines, that the sum of each, taken any way of the
square, amounts to the same.
Any five of these sums taken in a right line make 65. You will observe
that five numbers in the diagonals A to D, and B to C, of the magical
square, answer to the ranks E to F, and G to H, in the natural square,
and that 13 is the centre number of both squares.
Public-domain text, read in full here on John Shaqi.
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