The uncertainty in the velocities of two particles $A$ and $B$ are $0.03 \ m \ s^{-1}$ and $0.01 \ m \ s^{-1}$ respectively. The mass of $B$ is four times the mass of $A$. The ratio of uncertainties in their positions is

  • A
    $4/3$
  • B
    $3/4$
  • C
    $16/9$
  • D
    $9/16$

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If uncertainty in position and momentum are equal,then uncertainty in velocity is

If the uncertainty in position and momentum are equal,then the uncertainty in velocity is .......

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Which of the following does not represent the mathematical expression for the $\text{HEISENBERG}$ uncertainty principle?

$A$ microscope using appropriate photons is engaged to track an electron in an atom within a distance of $0.001 \ nm$. What will be the uncertainty involved in measuring its velocity?

Assertion : It is impossible to determine the exact position and exact momentum of an electron simultaneously.
Reason : The path of an electron in an atom is clearly defined.

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