If $\overrightarrow{a}=\hat{i}+\hat{j}+\hat{k}$,$\overrightarrow{b}=\hat{i}+\hat{j}$,$\overrightarrow{c}=\hat{i}$ and $(\overrightarrow{a} \times \overrightarrow{b}) \times \overrightarrow{c}=\lambda \overrightarrow{a}+\mu \overrightarrow{b}$,then $\lambda+\mu$ is equal to:

  • A
    $0$
  • B
    $1$
  • C
    $-1$
  • D
    $3$

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Similar Questions

Match the items given in Column $I$ with those in Column $II$ and select the correct option given below:
Column $I$ Column $II$
$(a)$ Tidal volume $(i)$ $2500 - 3000 \ mL$
$(b)$ Inspiratory Reserve volume $(ii)$ $1100 - 1200 \ mL$
$(c)$ Expiratory Reserve volume $(iii)$ $500 - 550 \ mL$
$(d)$ Residual volume $(iv)$ $1000 - 1100 \ mL$

Peptidoglycan is present in:

When a metallic surface is illuminated with radiation of wavelength $\lambda$,the stopping potential is $V$. If the same surface is illuminated with radiation of wavelength $2\lambda$,the stopping potential is $\frac{V}{4}$. The threshold wavelength for the metallic surface is:

The number of atoms/molecules contained in one face-centred cubic $(FCC)$ unit cell of a monoatomic substance is:

The length of the tangent drawn to the circle $x^2+y^2-2x+4y-11=0$ from the point $(1,3)$ is:

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