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Q.What is meant by the concept of matter-wave of de Broglie? Establish the relation for de Broglie wavelength in terms of kinetic energy. OR Explain binding energy. If 0.3% be the mass defect in a nuclear fusion reaction then how much energy will be released in fusion reaction of mass of 1 kg?

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2025Subjective· 5mImportance★★★★★
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Matter waves: a particle of momentum pp has wavelength λ=h/p\lambda=h/p; writing p=2mEp=\sqrt{2mE} gives λ=h2mE\lambda=\dfrac{h}{\sqrt{2mE}}. (An OR alternative on binding energy / fusion energy is also offered.)

De Broglie's hypothesis. Since radiation shows a dual (wave–particle) nature, de Broglie proposed that matter too has a dual nature: every moving particle has an associated matter wave (de Broglie wave). By analogy with a photon (whose momentum is p=h/λp=h/\lambda), a particle of momentum p=mvp=mv has wavelength

λ=hp=hmv,\lambda=\frac{h}{p}=\frac{h}{mv},

where hh is Planck's constant.

Relation in terms of kinetic energy. For a non-relativistic particle of mass mm and speed vv, kinetic energy is

E=12mv2=(mv)22m=p22m.E=\frac12 mv^2=\frac{(mv)^2}{2m}=\frac{p^2}{2m}.

Therefore the momentum is

p=2mE.p=\sqrt{2mE}.

Substituting into λ=h/p\lambda=h/p:

λ=h2mE.\boxed{\lambda=\frac{h}{\sqrt{2mE}}}.

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