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Let veca=a(1)hati+a(2)hatj+a(3)hatk, vec...

Let `veca=a_(1)hati+a_(2)hatj+a_(3)hatk, vecb=b_(1)hati+b_(2)hatj+b_(3)hatk` and `vecc=c_(1)hati+c_(2)hatj+c_(3)hatk` be three non zero vectors such that `vecc` is a unit vector perpendicular to both `veca` and `vecb` . If the angle between `veca` and `vecb` is `(pi)/6`, then `|(a_(1),a_(2),a_(3)),(b_(1),b_(2),b_(3)),(c_(1),c_(2),c_(3))|^(2)` is equal to

A

0

B

1

C

`1/4(a_(1)^(2)+a_(2)^(2)+a_(3)^(2))(b_(1)^(2)+b_(2)^(2)+b_(3)^(2))`

D

`3/4(a_(1)^(2)+a_(2)^(2)+a_(3)^(2))(b_(1)^(2)+b_(2)^(2)+b_(3)^(2))`

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The correct Answer is:
c

` (veca xx vecb . Vecc)^(2) = |veca|^(2) |vecb|^(2) |vecc|^(2) sin^(2) theta cos^(2) phi`
(` theta` is the angle between `veca and vecb , phi , =0)`
`1/4 (a_(1)^(2)+ a_(2)^(2) +a_(3)^(2) (b_(1)^(2) +b_(2)^(2) + b_(3)^(2))`
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Let veca=a_(1)hati+a_(2)hatj+a_(3)hatk,vecb=b_(2)hatj+b_(3)hatk and vecc=c_(1)hati+c_(2)hatj+c_(3)hatk gve three non-zero vectors such that vecc is a unit vector perpendicular to both veca and vecb . If the angle between veca and vecb is pi/6 , then prove that |{:(a_(1),a_(2),a_(3)),(b_(1),b_(2),b_(3)),(c_(1),c_(2),c_(3)):}|p=1/4 (a_(1)^(2)+a_(2)^(2)+a_(3)^(2))(b_(1)^(2)+b_(2)^(2)+b_(3)^(2))

Let overset(to)(a) =a_(1) hat(i) + a_(2) hat(j) + a_(3) hat(k) , overset(to)(a) = b_(1) hat(i) +b_(2) hat(j) +b_(3) hat(k) " and " overset(to)(a) = c_(1) hat(i) +c_(2) hat(j) + c_(3) hat(k) be three non- zero vectors such that overset(to)(c ) is a unit vectors perpendicular to both the vectors overset(to)(c ) and overset(to)(b) . If the angle between overset(to)(a) " and " overset(to)(n) is (pi)/(6) then |{:(a_(1),,a_(2),,a_(3)),(b_(1),,b_(2),,b_(3)),(c_(1),,c_(2),,c_(3)):}| is equal to

Let veca=a_1hati+a_2hatj+a_3hatk, vecb=b_1hati+b_2hatj+b_3hatk and vecc=c_1hati+c_2hatj+c_3hatk then show that vecaxx(vecb+vecc)=vecaxxb+vecaxxvecc

If veca=2hati+3hatj+6hatk and vecb=6hati+3hatj-2hatk , find the angle, between vectors veca and vecb . Also find unit vector perpendicular to both veca and vecb

Let veca = a_1hati + a_2hatj + a_3hatk, vecb = b_1hati + b_2hatj+ b_3hatk and vecc = c_1hati + c_2hatj + c_3hatk be three non zero vectors such that |vecc| =1 angle between veca and vecb is pi/4 and vecc is perpendicular to veca and vecb then |[a_1, b_1, c_1], [a_2, b_2, c_2], [a_3, b_3, c_3]|^2= lamda(a_1 ^2 +a_2 ^2 + a_3 ^2)(b_1 ^2 + b_2^2+b_3^2) where lamda is equal to (A) 1/2 (B) 1/4 (C) 1 (D) 2

Let veca =hati + hatj + sqrt2 hatk, vecb = b_(1) hati + b _(2) hatj + sqrt2 hatk and vecc = 5 hati + hatj + sqrt2 hatk be three vectors such that the projection vector of vecb on veca is veca. If veca + vecb perpendicular to vecc, then |vecb| is equal to

If veca=hati-2hatj+3hatk, vecb=2hati+3hatj-hatk and vecc=rhati+hatj+(2r-1)hatk are three vectors such that vecc is parallel to the plane of veca and vecb then r is equal to,

if Delta=det[[a_(1),b_(1),c_(1)a_(2),b_(2),c_(2)a_(3),b_(3),c_(3)]]

CENGAGE-DIFFERENT PRODUCTS OF VECTORS AND THEIR GEOMETRICAL APPLICATIONS -Exercise
  1. vector vecc are perpendicular to vectors veca= (2,-3,1) and vecb= (1,...

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  2. Given veca=xhati+yhatj+2hatk,vecb=hati-hatj+hatk , vecc=hati+2hatj, ve...

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  3. Let veca=a(1)hati+a(2)hatj+a(3)hatk, vecb=b(1)hati+b(2)hatj+b(3)hatk a...

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  4. Let vecr, veca, vecb and vecc be four non-zero vectors such that vecr....

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  5. If veca, vecb and vecc are such that [veca vecb vecc] =1, vecc= lambda...

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  6. If 4veca+5vecb+9vecc=0 " then " (vecaxxvecb)xx[(vecbxxvecc)xx(veccxxve...

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  7. Value of [vec a xx vec b,vec a xx vecc,vec d] is always equal to

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  8. Let hata and hatb be mutually perpendicular unit vectors. Then for an...

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  9. Let veca and vecb be unit vectors that are perpendicular to each other...

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  10. veca and vecb are two vectors such that |veca|=1 ,|vecb|=4 and veca. V...

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  11. Then for any arbitary vector veca, (((veca xx vecb) + (veca xx vecb))...

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  12. If veca .vecb =beta and veca xx vecb = vecc ," then " vecb is

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  13. If a(vecalphaxxvecbeta)=b(vecbetaxxvecgamma)+c(vecgammaxxvecalpha)=vec...

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  14. If (vecaxxvecb)xx(vecbxxvecc)=vecb, where veca,vecb and vecc are non z...

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  15. If vecr.veca=vecr.vecb=vecr.vecc=1/2 for some non zero vector vecr and...

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  16. A vector of magnitude 10 along the normal to the curve 3x^2+8x y+2y...

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  17. If veca and vecb are two unit vectors inclined at an angle pi//3 then ...

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  18. If veca and vecb are othogonal unit vectors, then for a vector vecr no...

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  19. If veca+vecb ,vecc are any three non- coplanar vectors then the equa...

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  20. Sholve the simultasneous vector equations for vecx aedn vecy: vecx+vec...

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