de Broglie wavelength - Wolfram|Alpha
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Assuming "de Broglie wavelength" refers to a formula | Use as a physical quantity instead
mass:  
momentum:  

Input interpretation:

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Equation:

link to /input/?i=6.62607%C3%9710%5E-34+joule+seconds&lk=1link to /input/?i=6.62607%C3%9710%5E-34+joule+seconds&lk=1link to /input/?i=6.62607%C3%9710%5E-34+joule+seconds&lk=1link to /input/?i=6.62607%C3%9710%5E-34+joule+seconds&lk=1
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Input values:

link to /input/?i=1+neutron+mass&lk=1link to /input/?i=1+neutron+mass&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1link to /input/?i=1.67%C3%9710%5E-27+kilogram+meters+per+second&lk=1
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Result:

link to /input/?i=396.8+nanometers&lk=1link to /input/?i=396.8+nanometers&lk=1link to /input/?i=1.562%C3%9710%5E-5+inches&lk=1link to /input/?i=1.562%C3%9710%5E-5+inches&lk=1link to /input/?i=0.3968+micrometers&lk=1link to /input/?i=0.3968+micrometers&lk=1
EnlargeEnable InteractivityDownload as CDF

Download full output as:

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