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Show that r(1)+r(2)=c cot ((C)/(2))...

Show that `r_(1)+r_(2)=c cot ((C)/(2))`

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" (i) Show that "r+r_(1)+r_(2)-r_(3)=4R cos C

(r_(1)+r_(2))tan((C)/(2)) is equal to

Prove that : (r_1+r_2) tan (C )/(2) = (r_3- r) cot ( C)/(2) = c

In any Delta ABC, prove the following : r_(1)=r cot((B)/(2))cot((C)/(2))

Show that ((1)/(r _(1))+ (1)/(r_(2)))((1)/(r_(2))+(1)/(r _(3)))((1)/(r _(3))+(1)/(r_(1)))=(64 R^(3))/(a ^(2)b^(2) c^(2))

Prove that (r_(1)+r_(2))/(1+cos C)=2R

Prove that r_(1) r_(2) + r_(2) r_(3) + r_(3) r_(1) = (1)/(4) (a + b + c)^(2)

In a Delta ABC prove that r_(1)r_(2)r_(3)=r^(3)cot^(2)((A)/(2))cot^(2)((B)/(2))cot^(2)((C)/(2))

Show that 16R^(2)r r_(1) r _(2) r_(3)=a^(2) b ^(2) c ^(2)

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ARIHANT MATHS-PROPERTIES AND SOLUTION OF TRIANGLES -Exercise For Sesssion 3
  1. If r(1) +r(2)+ r = r(3), then show that Delta is right angled.

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  2. In an equilateral triangle, the in-radius, circum-radius and one of th...

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  3. Show that ((1)/(r (1))+ (1)/(r(2)))((1)/(r(2))+(1)/(r (1)))((1)/(r (3)...

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  4. The exradii r(1), r(2), r(3)" of "DeltaABC and in HP, show that a,b an...

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  5. In a DeltaABC, show that r(1)* r(2)* r(3)*r=Delta^(2).

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  6. If the angle opf a triangle are in the ratio 1:2:3, then show that the...

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  7. Show that, 4 R r cos ""A/2cos ""B/2 cos ""C/2 =Delta

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  8. In Delta ABC, if (a-b)(s-c)=(b-c)(s-a) then r1, r2, r3 are in

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  9. In a triangle ABC,if 1/r1^2+1/r2^2+1/r3^2+1/r^2=

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  10. (r1-r)(r2-r)(r3-r)=4R r^2

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  11. Show that ((1)/(r (1))+ (1)/(r(2)))((1)/(r(2))+(1)/(r (3)))((1)/(r (3)...

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  12. Prove that (r+r1)tan((B-C)/2)+(r+r2)tan((C-A)/2)+(r+r3)tan((A-B)/2)=0

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  13. Show that (b-c)/(r (1))+ (c-a)/(r (2))+(c-a)/(r (3)) =0.

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  14. If the sides be a,b,c, than find (r(1)- r)(r (2)+r(3)).

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  15. If a,b,c are in AP, then show that r(1), r(2), r(3) are in HP.

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  16. In Delta ABC with usual notation r1/(bc)+r2/(ca)+r3/(ab) is

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  17. Show that r(1)+r(2)=c cot ((C)/(2))

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  18. Show that Rr (sin A+sin B + sin C) =Delta

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  19. Show that 16R^(2)r r(1) r (2) r(3)=a^(2) b ^(2) c ^(2)

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  20. If (r)/(r (1))= (r(2))/(r (3)), then show that c=90^(@).

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