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[" A the vertor and cartesian equations of the plane containing the two,"],[+hat j-3hat k+lambda(hat i+2hat j+5hat k)" and,"vec r=3hat i+3hat j+2hat k+mu(3hat i-2hat j)],[" ven lines pass through points having position vectors "vec a_(1)=]

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Find the vector and Cartesian equations of the plane containing the two lines vec r=2hat i+hat j-3hat k+lambda(hat i+2hat j+5hat k) and vec r=3hat i+3hat j+2hat k+mu(3hat i-2hat j+5hat k)

Find the vector and Cartesian equations of the plane containing the two lines vec r=2 hat i+ hat j-3 hat k+lambda( hat i+2 hat j+5 hat k)a n d , vec r=3 hat i+3 hat j+2 hat k+mu(3 hat i-2 hat j+ 5hat k)

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Find the vector and cartesian equation of a plane containing the two lines vec r=(2hat i+hat j-3hat k)+lambda(hat i+2hat j+5hat k) and vec r=(3hat i+3hat j+2hat k)+mu(3hat i-2hat j+5hat k) Also,show that the line vec r=(2hat i+5hat j+2hat k)+P(3hat i-2hat j+5hat k) lies in the plane.

Equation of the plane containing the lines vec r=(hat i-2hat j+hat k)+t(hat i+2hat j-hat k)vec r=(hat i+2hat j-hat k)+s(hat i+hat j+3hat k) is

Find the vector and cartesian equation of the plane containing the two lines vec(r)=2hat(i)+hat(j)-3hat(k)+lamda(hat(i)+2hat(j)+5hat(k)) and vec(r)=3hat(i)+3hat(j)-7hat(k)+mu(3hat(i)-2hat(j)+5hat(k))

Vectors vec A=hat i+hat j-2hat k and vec B=3hat i+3hat j-6hat k are

Find the shortest distance between the lines vec r=(hat i+2hat j+hat k)+lambda(hat i-hat j+hat k) and ,vec r,=2hat i-hat j-hat k+mu(2hat i+hat j+2hat k)

If vec r=(hat i+2hat j+3hat k)+lambda(hat i-hat j+hat k) and vec r=(hat i+2hat j+3hat k)+mu(hat i+hat j-hat k) are bisector of two lines is

Find the shortest distance between the lines vec r=(hat i+2hat j+hat k)+lambda(hat i-hat j+hat k) and vec r=(2hat i-hat j-hat k)+mu(2hat i+hat j+2hat k)