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Show that the area of the triangle forme...

Show that the area of the triangle formed by the lines `y = m_(1) x + c_(1) , y = m_(2) x + c_(2) " and " x = 0 " is " ((c_(1) - c_(2))^(2))/(2|m_(1) - m_(2)|)`

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Show that the area of the triangle formed by the straight lines y = m_(1) x + c_(1) , y = m_(2) x + c_(2) and x = 0 is (1)/(2)(c_(1)-c_(2))^(2)/(|m_(1)-m_(2)|) sq . Units .

If three lines whose equations are y = m_(1) x + c_(1) , y = m_(2) x + c_(2) " and " m_(3) x + c_(3) are concurrent, then show that m_(1) (c_(2) - c_(3)) + m_(2) (c_(3) - c_(1)) + m_(3) (c_(1) - c_(2)) = 0 .

The area of the triangle formed by the lines y=a x ,x+y-a=0 and the y-axis is (a) 1/(2|1+a|) (b) 1/(|1+a|) (c) 1/2|a/(1+a)| (d) (a^2)/(2|1+a|)

If m_(1),m_(2) be the roots of the equation x^(2)+(sqrt(3)+2)x+sqrt(3)-1 =0 , then the area of the triangle formed by the lines y = m_(1)x,y = m_(2)x and y = 2 is

The area of the parallelogram formed by the lines y=m x ,y=x m+1,y=n x ,a n dy=n x+1 equals. (a) (|m+n|)/((m-n)^2) (b) 2/(|m+n|) 1/((|m+n|)) (d) 1/((|m-n|))

Statement - I: Equation of bisectors of the angles between the liens x=0 and y=0 are y=+-x Statement - II : Equation of the bisectors of the angles between the lines a_(1)x+b_(1)y+c_(1)=0anda_(2)x+b_(2)y+c_(2)=0 are (a_(1)x+b_(1)y+c_(1))/(sqrt(a_(1)^(2)+b_(1)^(2)))=+-(a_(2)x+b_(2)y+c_(2))/(sqrt(a_(2)^(2)+b_(2)^(2))) (Provided a_(1)b_(2)nea_(2)b_(1)andc_(1),c_(2)gt0)

Show that the condition for the lines x= a_1z+b_1,y = c_1z+d_1 and x = a_2z+b_2, y = c_2z+ d_2 be perpendicular is a_1a_2+c_1c_2=0

Show that the equation of the straight line throught (alpha,beta) and through the point of intersection of the lines a_(1)x+b_(1)y+c_(1)=0 anda_(2)x+b_(2)y+c_(2)=0 is (a_(1)x+b_(1)y+c_(1))/(a_(1)alpha+b_(1)beta+c_(1))=(a_(2)x+b_(2)y+c_(2))/(a_(2)alpha+b_(2)beta+c_(2))

If m_1 and m_2 are the roots of the equation x^2-a x-a-1=0 , then the area of the triangle formed by the three straight lines y=m_1x ,y=m_2x , and y=a(a!=-1) is

For all values of m in R the line y - mx + m - 1 = 0 cuts the circle x^2 + y^2 - 2x - 2y + 1 = 0 at an angle

UNITED BOOK HOUSE-NAVA NALANDA-EXERCISE
  1. Prove that the inequations (2x+1)/(7x-1)>5and (x+7)/(x-8)>2have no sol...

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  2. Exhibit graphically the solution region of the following system of 'in...

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  3. Prove that the product of the lengths of the perpendiculars drawn from...

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  4. Find the equation of a circle which touches both the axes and the line...

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  5. The focus of a parabola is (1,5)and its directrix is x+y+2=0.Find the...

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  6. 3(1-x) lt 2(x+4)

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  7. Prove that every function can be expressed as the sum of an -even and ...

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  8. A,B,C are three finite sets such that n(A)=17,n(B)=13,n(C)=15,n(AcapB)...

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  9. Draw the graph of f(x)=|x-1|+|x-2|.

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  10. Whats is the probability of arrangement of the letters of the word SOC...

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  11. The mean and standard deviation of 100 observations were calculated as...

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  12. Prove that tan6^@tan42^@tan66^@tan78^@=1

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  13. Solve :cos3x+cos2x=sin((3x)/2)+sin(x/2), (0lexlepi)

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  14. if (1-ix)/(1+ix)=a-ib,then prove that a^2+b^2=1(a,b x are real).

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  15. Solve graphically :|x-y|ge3.

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  16. How many different numbers of 4 digits each can be formed with the dig...

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  17. Solve :12x^4-56x^3+89x^2-56x+12=0

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  18. Show that the area of the triangle formed by the lines y = m(1) x + c(...

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  19. Find the equation of the circle described on the common chord of the c...

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  20. Show that the sum of the reciprocals of the segments of any focal cho...

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