Home
Class 12
MATHS
The equation of the plane containing the...

The equation of the plane containing the line
`vecr=hati+hatj+lamda(2hati+hatj+4hatk)` is

A

`vecr (-hati -2 hatj + hatk) =3`

B

`vecr (hati -4 hatj -hatk) =0`

C

`vecr (hati + 2 hatj -hatk)=3`

D

None of these

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Similar Questions

Explore conceptually related problems

The equation of the plane containing the lines vecr=(hati+hatj-hatk)+lamda(3hati-hatj) and vecr=(4hati-hatk)+mu(2hati+3hatk) , is

Find the vector and the Cartesian form of the equation of the plane containing two lines: vecr=hati+2hatj-hatk+lamda(2hati+3hatj+6hatk) and vecr= 3hati+3hatj-5hatk+mu(-2hati+3hatj+8hatk)

The vector equation of the plane containing he line vecr=(-2hati-3hatj+4hatk)+lamda(3hati-2hatj-hatk) and the point hati+2hatj+3hatk is

Find the vector equation of the plane in which the lines vecr=hati+hatj+lambda(hati+2hatj-hatk) and vecr=(hati+hatj)+mu(-hati+hatj-2hatk) lie.

The equation of plane containing the lines barr=(2hatj-3hatk)+lamda(hati+2hatj+3hatk) barr=(2hati+6hatj+3hatk)+lamda(2hati+3hatj+4hatk)

Find the vector and Cartesian forms of the equationi of the plane containing the two lines. vecr=(hati+2hatj-4hatk)+lambda(2hati+3hatj+6hatk) and vecr=(9hati+5hatj-hatk)+mu(-2hati+3hatj+8hatk) .

Find the vector and Cartesian equations of a plane containing the two lines vecr=(2hati+hatj-3hatk)+lambda(hati+2hatj+5hatk) and vecr=(3hati+3hatj+2hatk)+mu(3hati-2hatj+5hatk) .