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If a,b,c ,are in A.P, then the determin...

If `a,b,c` ,are in `A.P,` then the determinant , `|(x+2,x+3,x+2a),(x+3,x+4,x+2b),(x+4,x+5,x+2c)|` is

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Choose the correct answer in questions 17 to 19: If a, b, c are in A.P., then the determinant [{:(x+2,x+3,x+2a),(x+3,x+4,x+2b),(x+4,x+5,x+2c):}] is : (a) 0 (b) 1 ( c) x (d) 2x

If a,b,c are in A.P. then the determinant {:[( x+2,x+3,x+2a),( x+3,x+4,x+2b),( x+4,x+5,x+2c)]:} is

Choose the correct answer in questions 17 to 19: If a, b, c are in A.P., then the determinant [{:(x+2,x+3,x+2a),(x+3,x+4,x+3b),(x+4,x+5,x+2c):}] is : (a) 0 (b) 1 ( c) x (d) 2x

If a,b,c are A.P then the value of the determinant |(x+2,x+3,x+2a),(x+3,x+4,x+2b),(x+4,x+5,x+2c)|

If a, b,c are in A.P., then the value of the determinant |(x+2,x+3,x+2a),(x+3,x+4,x+2b),(x+4,x+5,x+2c)| is :

If a, b, c, are in A.P, then the determinant |x+2x+3x+2a x+3x+4x+2b x+4x+5x+2c| is (A) 0 (B) 1 (C) x (D) 2x

Given a,b,c are in A.P. Then determinant : |(x+1,x+2,x+a),(x+2,x+3,x+b),(x+3,x+4,x+c)| in its simplified form is :