Maths-
General
Easy

Question

Let a with rightwards arrow on top equals 2 i with rightwards arrow on top minus j with rightwards arrow on top plus k with rightwards arrow on top comma b with rightwards arrow on top equals i with rightwards arrow on top plus stack 2 j with rightwards arrow on top minus k with rightwards arrow on top comma c with rightwards arrow on top equals i with rightwards arrow on top plus j with rightwards arrow on top minus 2 k with rightwards arrow on top, A vector in a plane of stack b with rightwards arrow on top and stack c with rightwards arrow on top whose projection on stack a with rightwards arrow on top has the magnitude square root of fraction numerator 2 over denominator 3 end fraction end root is

  1. 2 i with rightwards arrow on top minus stack 3 j with rightwards arrow on top minus 3 k with rightwards arrow on top    
  2. 2 i with rightwards arrow on top plus stack 3 j with rightwards arrow on top plus 3 k with rightwards arrow on top    
  3. negative 2 i with rightwards arrow on top minus j with rightwards arrow on top plus 5 k with rightwards arrow on top    
  4. 2 i with rightwards arrow on top plus j with rightwards arrow on top plus 5 k with rightwards arrow on top    

The correct answer is: negative 2 i with rightwards arrow on top minus j with rightwards arrow on top plus 5 k with rightwards arrow on top

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The position vector of a point P is given by r with ‾ on top equals x i with ˆ on top plus y j with ˆ on top plus z k with ˆ on top where x comma y comma z element of N and a with ‾ on top equals i with ˆ on top plus 2 j with ˆ on top plus k with ˆ on top. Then the number of possible positions of P such that stack r with ‾ on top times stack a with ‾ on top equals 20 is

The position vector of a point P is given by r with ‾ on top equals x i with ˆ on top plus y j with ˆ on top plus z k with ˆ on top where x comma y comma z element of N and a with ‾ on top equals i with ˆ on top plus 2 j with ˆ on top plus k with ˆ on top. Then the number of possible positions of P such that stack r with ‾ on top times stack a with ‾ on top equals 20 is

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If A,B,C are three points with position vectors i with ˆ on top plus j with ˆ on top comma i with ˆ on top minus j with ˆ on top and  plus q j with ˆ on top plus r k with ˆ on top respectively, then the points are collinear if

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a with ‾ on top equals i with ‾ on top plus j with ‾ on top plus k with ‾ on top comma b with ‾ on top equals i with ‾ on top minus j with ‾ on top plus k with ‾ on top and c with ‾ on top equals i with ‾ on top minus j with ‾ on top minus k with ‾ on top be the three vectors A vector stack v with ‾ on top in the plane of stack a with ‾ on top & stack b with ‾ on top whose projection of stack c with ‾ on top is fraction numerator 1 over denominator square root of 3 end fraction is given by

a with ‾ on top equals i with ‾ on top plus j with ‾ on top plus k with ‾ on top comma b with ‾ on top equals i with ‾ on top minus j with ‾ on top plus k with ‾ on top and c with ‾ on top equals i with ‾ on top minus j with ‾ on top minus k with ‾ on top be the three vectors A vector stack v with ‾ on top in the plane of stack a with ‾ on top & stack b with ‾ on top whose projection of stack c with ‾ on top is fraction numerator 1 over denominator square root of 3 end fraction is given by

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The position vector of a point P is T with minus on top equals x i with ˆ on top plus y j with ˆ on top plus z k with ˆ on top where x comma y comma z element of N and a with minus on top equals i with ˆ on top plus 2 j with ˆ on top plus k with ˆ on top. If stack r with minus on top times stack a with minus on top equals 20, then the number of possible positions of P is

The position vector of a point P is T with minus on top equals x i with ˆ on top plus y j with ˆ on top plus z k with ˆ on top where x comma y comma z element of N and a with minus on top equals i with ˆ on top plus 2 j with ˆ on top plus k with ˆ on top. If stack r with minus on top times stack a with minus on top equals 20, then the number of possible positions of P is

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