Heisenberg's uncertainty principle is not valid for:

  • A
    Moving electrons
  • B
    Motor car
  • C
    Stationary particles
  • D
    Both $(b)$ and $(c)$

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The mass of particle $A$ is $5$ times that of particle $B$. The uncertainty in their velocities are $0.05 \ ms^{-1}$ and $0.02 \ ms^{-1}$ respectively. What is the ratio of the uncertainties in their positions,i.e.,$\Delta x_A : \Delta x_B$?

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The Heisenberg uncertainty principle is not valid for

Each quantum mechanical wave function does not have a readily interpretable physical meaning,but the square of the wave function gives the . . . . . . of finding the electron at a certain point.

An electron is moving with a velocity of $600 \, m/s$ with an accuracy of $0.005\%$. The uncertainty in its position will be: ($h = 6.6 \times 10^{-34} \, kg \, m^2 \, s^{-1}$,mass of electron $m_e = 9.1 \times 10^{-31} \, kg$)

Assertion $(A)$: The probability of finding an electron in a small volume around a point $(x, y, z)$ at a distance $r$ from the nucleus is proportional to $\psi^2$.
Reason $(R)$: Subatomic particles possess both particle and wave nature.

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