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  2. Tin - Wikipedia

    en.wikipedia.org/wiki/Tin

    Tin with lead forms a eutectic mixture at the weight proportion of 61.9% tin and 38.1% lead (the atomic proportion: 73.9% tin and 26.1% lead), with melting temperature of 183 °C (361.4 °F). Such solders are primarily used for joining pipes or electric circuits .

  3. Aluminium foil - Wikipedia

    en.wikipedia.org/wiki/Aluminium_foil

    The term "tin foil" survives in the English language as a term for the newer aluminium foil. Tin foil is less malleable than aluminium foil and tends to give a slight tin taste to food wrapped in it. Tin foil has been supplanted by aluminium and other materials for wrapping food. [3] The first audio recordings on phonograph cylinders were made ...

  4. Tin foil - Wikipedia

    en.wikipedia.org/wiki/Tin_foil

    Foil made from a thin leaf of tin was commercially available before its aluminum counterpart. [2] In the late 19th century and early 20th century, tin foil was in common use, and some people continue to refer to the new product by the name of the old one. Tin foil is stiffer than aluminum foil. [3]

  5. Brazing - Wikipedia

    en.wikipedia.org/wiki/Brazing

    structural, melting Lowers melting point. Toxic. Produces toxic fumes, requires ventilation. Tin: structural, melting, wetting Lowers melting point, improves fluidity. Broadens melting range. Can be used with copper, with which it forms bronze. Improves wetting of many difficult-to-wet metals, e.g. stainless steels and tungsten carbide. Traces ...

  6. Melting point - Wikipedia

    en.wikipedia.org/wiki/Melting_point

    The melting point (or, rarely, liquefaction point) of a substance is the temperature at which it changes state from solid to liquid. At the melting point the solid and liquid phase exist in equilibrium. The melting point of a substance depends on pressure and is usually specified at a standard pressure such as 1 atmosphere or 100 kPa.

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  8. Newton scale - Wikipedia

    en.wikipedia.org/wiki/Newton_scale

    melting point of an alloy of one part lead, four parts tin and five parts bismuth 48: 3: melting point of an alloy of equal parts of bismuth and tin 57: 3 + 1 ⁄ 4: melting point of an alloy of one part bismuth and two parts tin 68: 3 + 1 ⁄ 2: melting point of an alloy of one part bismuth and eight parts tin 81: melting point of bismuth 96: ...

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