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The Magnetised Hairpin: Proving the Steel With a Compass
Penny

Creado por

Penny

28. septiembre 2026DK
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The Magnetised Hairpin: Proving the Steel With a Compass

Steel hairpins hold their spring and last; iron ones bend and rust. The two look the same, so cheap iron could be sold as steel. Charles A. Hussey and William H. Lyman of New York received US 255,292, dated 21 March 1882 (filed 4 February 1882), for "a new article of manufacture--namely, a magnetized steel hair-pin", so that customers "can demand that hair-pins offered to them as steel shall be tested in their presence by a compass". This rung computes how a magnetised pin swings a compass with distance, then magnetises a hairpin, a nail and a paper clip and measures what each keeps.
Principiante
About 1 hour

Instrucciones

1

How close the compass must be

Cargando el cuaderno de Jupyter…
2

The instrument that does the testing

The embedded blueprint magnetises a needle and floats it; the same needle tests the pin.
3

Read US 255,292

"Hair-pins are commonly made of iron or soft metal; but the better grade of these articles are made of steel. Unscrupulous dealers oftentimes sell the iron and soft-metal hair-pins for those made of steel, thus defrauding their customers". "The object of our improvement is to produce steel hair-pins which may be easily distinguished from those of inferior quality. To this end our improvement consists in a new article of manufacture--namely, a magnetized steel hair-pin." The ends are left bare as magnetic poles, and "A hair-pin embodying our improvement can be tested as to being magnetic by its ability to attract another".
4

The test, as a program

Espacio de trabajo Blockly

Loading Blockly workspace...

5

Steel pin, iron nail, paper clip

Magnetise a hairpin, an iron nail and a straightened paper clip as in the program, the same number of strokes each. Test each one with the compass at 2, 4 and 8 cm, and count how many paper clips each will lift. Tap each ten times on the table and test again, then leave them a day and test again. Write down which kept its magnetism. Compare the fall-off with distance against the notebook.

Materiales para este paso:

Horquilla para el peloHorquilla para el pelo4 piezas
Clavos de hierroClavos de hierro1 pieza
ClipsClips1 pieza

Herramientas necesarias:

Brújula magnéticaBrújula magnética
Juego de imanes de barraJuego de imanes de barra
ReglaRegla
6

A magnet test that gives the wrong answer

Magnetised-pin test troubleshooting.

Flow

Loading...
7

History and honest limits

**Charles A. Hussey** and **William H. Lyman** of New York filed US 255,292 on 4 February 1882; it is dated 21 March 1882. **Honest limits.** The patent says "steel is the only metal which will retain magnetism". That is not so: cobalt, nickel and some of their alloys also do, and soft iron keeps a little. The test shows a pin is not soft iron, not that it is good steel. The dipole formula is only a rough guide closer than the pin's own length, which is where the 1 and 2 cm rows sit. The earth's field and the magnetisations in the notebook are examples.

Materiales

3

Herramientas requeridas

3

CC0 Dominio público

Este Blueprint se publica bajo CC0. Eres libre de copiar, modificar, distribuir y usar este trabajo para cualquier propósito, sin pedir permiso.

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