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Let hata be a unit vector and hatb a non...

Let `hata` be a unit vector and `hatb` a non zero vector non parallel to `veca`. Find the angles of the triangle tow sides of which are represented by the vectors. `sqrt(3)(hatxxvecb)and vecb-(hata.vecb)hata`

A

`tan ^(-1)(sqrt3)`

B

`tan ^(-1)(1//sqrt3)`

C

`cot^(-1)(0)`

D

tant^(-1)(1)`

Text Solution

Verified by Experts

The correct Answer is:
a,b,c

consider `vecV_(1). vecV_(2) = 0 Rightarrow A = 90^(@)`
using the sine law, `|(vecb-(veca.vecb)hata)/sin theta| = (sqrt3|hataxxvecb|)/costheta`

`or tan theta = 1/sqrt3 (|vecb - (hata xx vecb) hata|)/(|hata xx vecb|)`
`1/sqrt3(|(hataxxvecb)xxhata|)/(|hata xx vecb|)`
`1/sqrt3 (|hata xxvecb||hata|sin90^(@))/(|hataxx vecb|) = 1/sqrt3`
`or theta pi/6`
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CENGAGE-DIFFERENT PRODUCTS OF VECTORS AND THEIR GEOMETRICAL APPLICATIONS -Exercise
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  2. If the sides vec(AB) of an equilateral triangle ABC lying in the xy-pl...

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  3. Let hata be a unit vector and hatb a non zero vector non parallel to v...

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  4. veca ,vecb and vecc are unimdular and coplanar. A unit vector vecd is ...

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  5. If veca + 2 vecb + 3 vecc = vec0 " then " veca xx vecb + vecb xx vecc...

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  6. Let veca and vecb be two non-collinear unit vectors. If vecu=veca-(vec...

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  7. if veca xx vecb = vecc.vecb xx vecc = veca , " where " vecc ne vec0 t...

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  8. Let veca, vecb, and vecc be three non- coplanar vectors and vecd be a ...

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  9. If veca, vecb and vecc are three unit vectors such that veca xx (vecb ...

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  10. If in triangle ABC, vec(AB) = vecu/|vecu|-vecv/|vecv| and vec(AC) = (...

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  11. [vecaxx vecb " " vecc xx vecd " " vecexx vecf] is equal to

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  12. The scalars l and m such that lveca + m vecb =vecc, " where " veca, ve...

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  13. If (veca xxv vecb) xx (vecc xx vecd) . (veca xx vecd) =0 then which of...

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  14. A,B C and dD are four points such that vec (AB) = m(2 hati - 6 hatj +...

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  15. If the vectors veca, vecb, vecc are non -coplanar and l,m,n are distin...

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  16. Let vec(alpha)=ahati+bhatj+chatk, vec(beta)=bhati+chatj+ahatk and vec(...

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  17. If vectors vecA=2hati+3hatj+4hatk, vecB=hati+hatj+5hatk and vecC form ...

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  18. If veca=xhati + y hatj + zhatk, vecb= yhati + zhatj + xhatk and vecc= ...

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  19. If veca xx (vecbxx vecc)= (veca xx vecb)xxvecc then

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  20. A vector vecd is equally inclined to three vectors veca=hati-hatj+hatk...

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