11. In large batteries, some of the jars frequently burst in the
discharge. To remedy this inconvenience, Mr. Nairne says that the
discharging-rod should never be made of a good conducting substance,
except the circuit be at least five feet long. But here it may be
remarked, that the length of the circuit weakens the force of the shock
proportionably; the highest degree of which is in many instances
required. When a coated phial is cracked, either by a spontaneous
discharge or otherwise, the outside coating must be removed from the
fractured part; then make it moderately hot by holding it near the fire;
in this situation apply burning sealing-wax to the part, so as to cover
the fracture completely, taking care that the thickness of the wax be
rather more than the thickness of the glass; lastly, cover all the
sealing-wax, and part of the glass beyond it, with a composition made of
four parts of bee’s-wax, one of rosin, one of turpentine, and a little
oil of olives: which composition must be spread upon a piece of oiled
silk, and applied in the form of a plaister. In this manner jars which
have been broken may be repaired effectually.
12. When a jar, and especially a battery, has been discharged, the wires
ought not to be touched with the hand before the discharging-rod has
been applied a second, and even a third time; as there generally remains
a residuum of the charge, which is sometimes very powerful. This
residuum is in a great measure occasioned by the electricity, which,
when the jar is charging, spreads itself over the uncoated part of the
glass, and which is not discharged at first, but gradually returns to
the coating after the first discharge is made.
13. When an experiment is to be performed which requires only a small
part of the apparatus, the remaining part should be removed from the
table.—Candles should never be placed near the prime-conductor; for the
effluvia of their flames carry off much of the electric matter.
14. One or two inches of the lower part of a Leyden phial should be
coated with some thick paint, in order to prevent the amalgam, which is
often scattered upon the table, from corroding the tin-foil, and thereby
diminishing the charge.
15. When a prime-conductor is used, those sparks are strongest which are
taken from the extremity farthest from the cylinder.
16. The longest sparks are drawn from any conductor along an electric
substance. Thus, if the conductor be supported by pillars of glass or
baked wood, the longest sparks may be taken close to the pillar. If the
conductor be bent a little inward, so as to make the surface concave, a
particularly large and undivided spark may be drawn from that place: but
where the surface is convex, the spark is more apt to be divided and
weakened.
Public-domain text, read in full here on John Shaqi.
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