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បច្ចេកវិទ្យា
ប្រដាប់ដែលស្លៀក
Gold-Leaf Electroscope
Ed

បង្កើតដោយ

Ed

17. សីហា 2026FI
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Gold-Leaf Electroscope

The instrument that made electric charge visible. Two leaves of gold beaten thinner than paper hang from a metal rod inside a glass jar; bring a charged object near the plate on top and the leaves fly apart, because both have taken the same sign of charge and like charges repel. Abraham Bennet published it in 1787, and for the next century it was how anyone actually knew whether a thing was charged, how strongly, and with which sign. It measures nothing in volts, yet it answers the only question the early electricians could not otherwise settle. Gold leaf is used because it can be beaten to roughly a ten-thousandth of a millimetre — light enough that the tiny force between two charges can lift it against gravity.
មធ្យម
3 hours

ការណែនាំ

1

Prepare the jar and lid

The jar is the working part, not decoration: it stops draughts moving the leaves and keeps humidity off them.

  1. Take a clear glass jar with a wide mouth and dry it thoroughly, inside and out.
  2. Cut a disc of stiff insulating material to fit the mouth as a lid, and drill a hole through its centre for the rod.
Everything about this instrument fights leakage. A film of moisture on glass conducts well enough to drain the charge before you have finished looking at it.

Materials for this step:

Glass Tubing KitGlass Tubing Kit1 ឈុត
2

Make the rod and collecting plate

Straighten a length of stiff copper wire for the rod. Flatten a small disc of copper sheet and fix it to the top as the collecting plate.

  1. Pass the rod through the lid so most of its length hangs inside the jar.
  2. Seal the rod in the lid so it is held firmly and insulated from anything else.
  3. Bend a small hook or flatten a tab on the lower end for the leaves to hang from.
The plate, rod and leaves are one conductor. Charge arriving at the plate spreads over the whole of it, which is why the leaves respond to something merely brought near the top.

Materials for this step:

Copper Wire (20 Gauge)Copper Wire (20 Gauge)1 length
Copper SheetCopper Sheet1 សន្លឹក
3

Hang the gold leaf

Gold leaf will not survive being handled with fingers — it tears on contact and clings to skin.

  1. Cut two identical strips on the backing paper, a few millimetres wide.
  2. Lift each with a dry soft brush or the backing itself and lay it over the hook so both hang flat and touch each other along their length.
  3. Work in still air. A breath will move them across the room.
The two leaves must hang in contact and parallel at rest. If they start apart, something is already charged or one is creased.

Materials for this step:

Gold LeafGold Leaf1 book
4

Charge it and read it

Rub a plastic rod with wool, or a glass rod with silk, and bring it near the plate without touching.

  1. The leaves diverge while the rod is near and fall when it is withdrawn — that is induction, and no charge has been transferred.
  2. Touch the rod to the plate instead and the leaves stay apart after it is removed — the instrument is now charged by contact.
  3. The angle of divergence indicates how much charge, not how many volts.
To find the SIGN of an unknown charge, first charge the electroscope with a known one. Bring the unknown near: leaves diverging further means the same sign, collapsing means the opposite. That test is the instrument's real purpose.
5

Discharge, and find out why it leaks

Touch the plate with a finger and the leaves fall — you are the path to earth.

  1. Time how long a charged electroscope holds its divergence on a dry day, then on a damp one.
  2. Warm the glass gently and try again.
A charged electroscope in humid air collapses within a minute or two; the same instrument in dry air can hold for far longer. This is not a fault in the build — it is the measurement, and it is how early experimenters learned that air itself carries charge away.
6

History and context

Abraham Bennet, a Derbyshire clergyman, described the gold-leaf electroscope in Philosophical Transactions in 1787. It was not the first electroscope — pith-ball and straw versions came earlier — but gold leaf was so much lighter that it responded to charges the others could not detect at all.

Its descendants did serious work. Adding a scale and a known charge turned it into the electrometer. In 1900 Julius Elster and Hans Geitel used carefully insulated electroscopes to show that even sealed, shielded vessels leaked charge steadily — an anomaly nobody could explain. That leak was ionisation from what we now call background radiation, and following it upwards in a balloon led Victor Hess to cosmic rays in 1912.

What we do not claim: the electroscope does not measure voltage. Divergence depends on charge, geometry and leaf mass together, so two instruments will not agree with each other in any absolute sense. It is a comparator and a detector, and it was never anything else.

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ប្លង់នេះត្រូវបានចេញផ្សាយក្រោម CC0។ អ្នកមានសិទ្ធិចម្លង កែប្រែ ចែកចាយ និងប្រើប្រាស់ដោយមិនចាំបាច់សុំអនុញ្ញាត។

គាំទ្រអ្នកបង្កើតដោយទិញផលិតផលតាមរយៈប្លង់របស់ពួកគេ ដែលពួកគេទទួលបាន កម្រៃជើងសារអ្នកបង្កើត កំណត់ដោយអ្នកលក់ ឬបង្កើតកំណែថ្មីនៃប្លង់នេះ ហើយបញ្ចូលជាការតភ្ជាប់ក្នុងប្លង់របស់អ្នកដើម្បីចែករំលែកចំណូល។

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