$A$ $\pi$-bond may be formed between two $p_x$-orbitals containing one unpaired electron each when they approach each other appropriately along:

  • A
    $x$-axis
  • B
    $y$-axis
  • C
    $z$-axis
  • D
    any direction

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Similar Questions

Considering the $x$-axis as the internuclear axis,which of the following will not form a sigma $(\sigma)$ bond and why?
$(a)$ $1s$ and $1s$
$(b)$ $1s$ and $2p_{x}$
$(c)$ $2p_{y}$ and $2p_{y}$
$(d)$ $1s$ and $2s$

Bond which is formed by sidewise overlapping of $2p$-orbitals of chalcogen atom is present in :

What is the number of $\pi$ bonds and $\sigma$ bonds respectively in the given structure?

If the internuclear axis of a diatomic molecule is $z$,then the overlap of $p_x$ and $p_y$ orbitals results in the formation of ........

The fluorine molecule is formed by

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