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CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
Q 1. If  satisfies the inequation x2 – x – 2 > 0 then a value exists for
(a) sin–1  (b) sec–1 (c) cos–1 (d) none of these
Q 2. If   are roots of the equation 6x2 11 + 3 = 0 then
(a) both cos–1  and cos–1 are real
(b) both cos–1  and cos–1  are real
(c) both cot–1  and cot–1 and are real
(d) none of these
Q 3. Let f(x) = sec–1x tan–1x. Then f(x) is real for
(a) x  [–1, 1] (b) x  R (c) x  (–, –1]  [1, ) (d) none of these
Q 4. If cos–1 x – sin–1 x = 0 then x is equal to
(a)
1
2
 (b) 1 (c) 2 (d)
1
2
Q 5. cosec–1 (cos x) is real if
(a) x  [–1, 1] (b) x  R
(c) x is an odd multiple of
2

(d) x is a multiple of 
Q 6. The principal value of sin–1
5
sin
6

 
 
 
is
(a)
6

(b)
5
6

(c)
7
6

(d) none of these
Q 7. The principal value of cos–1
7
sin
6

 

 
 
is
(a)
5
3

(b)
7
6

(c)
3

(d) none of these
Q 8. The principal value of sin–1
3
cos sin 1
2

 
 
 
 
 
 
 
 
 
is
(a)
6

(b)
3

(c)
3

 (d) none of these
Q 9. The principal value of cos–1
1 9 9
sin
10 10
2
 
 
 

 
 
 
 
is
(a)
3
20

(b)
1
2
 (c) 1 (d) none of these
Q 10. The value of cos
1 15
tan tan is
4

 

 
 
 
 
 
(a)
1
2
(b)
1
2
 (c) 1 (d) none of these
Q 11.
2
5

 is the principal value of
CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
(a) 1 7
cos cos
5
 
 
 
 
(b) 1 7
sin sin
5
 
 
 
 
(c) 1 7
sec sec
5
 
 
 
 
(d) none of these
Q 12. If cos–1  + cos–1 + cos–1 v = 3 then  + v +  is equal to
(a) – 3 (b) 0 (c) 3 (d) – 1
Q 13. If
10
1
i
i 1
cos x 0



 then
10
i
i 1
x

 is
(a) 0 (b) 0 (c) 5 (d) none of these
Q 14. If
2n
1
i
i 1
sin x n


 
 then
2n
i
i 1
x

 is equal to
(a) n (b) 2n (c)
n(n 1)
2

(d) none of these
Q 15. The value of cos–1 1
1 3
sin
2 2

 
 
   
   
   
is
(a)
3

(b) 0 (c)
2
3

(d) none of these
Q 16. The value of tan 1 1
2tan
5 4
 
 

 
 
is
(a) 0 (b) 1 (c)
7
17
(d) none of these
Q 17. The formula cos–1
2
1
2
1 x
2tan
1 x




x holds only for
(a) x  R (b) |x| ≤ 1 (c) x  (–1, 1] (d) x  [1, +)
Q 18. tan–1a + tan–1b, where a > 0, b > 0 ab > 1, is equal to
(a) 1 a b
tan
1 ab
 

(b) 1 a b
tan
1 ab
 
 

(c) 1 a b
tan
1 ab
 
 

(d) none of these
Q 19. The set of values of x for which tan–1 1
2
x
sin x
1 x



hold is
(a) R (b) [–1, 1] (c) [0, 1] (d) [–1, 0]
Q 20.
2
1 2 2 1 1
1 x x
cos x 1 x . 1 cos xcos x
2 4 2
  
 
 
   
 
 
 
hold is
(a) |x| ≤ 1 (b) x  R (c) 0 ≤ x < 1 (d) –1 ≤ x < 0
Q 21. If (x) = sin–1 2
3 1 1
x 1 x , x 1,
2 2 2
 
 
   
 
 
 
then f(x) is equal to
CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
(a) 1 1
1
sin sin x
2
 
 (b) 1
sin x
6
 
 (c) 1
sin x
6
 
 (d) none of these
Q 22. The formula 2sin–1 x = sin 2
(2x 1 x )
 holds for
(a) x  [0, 1] (b)
1 1
x ,
2 2
 
 
 
 
(c) x  (–1, 0) (d)
3 3
x ,
2 2
 
 
 
 
 
Q 23. cos–1 (cos x) = x is satisfied by
(a) x  R (b) x  [0, ] (c) x  [–1, 1] (d) none of these
Q 24. If 2tan–1x + sin–1
2
2x
1 x

is independent of x then
(a) x  [1, ) (b) x  [–1, 1] (c) x  (–, –1) (d) none of these
Q 25. If tan–12, tan–13 are angles of a triangle then the third angle is
(a)
4

(b)
3
4

(c)
2

(d) none of these
Q 26.
3
1
n 1
1
tan
n


 is equal to
(a) 0 (b)  (c)
2

(d) none of these
Q 27. The value of tan 1 1
4 2
cos sin
5 13
 
 
 
 

 
 
 
   
 
is
(a)
7
16
(b)
17
6
(c)
6
17
(d) none of these
Q 28. If sin–1 x cos–1 x
x
6
 then x is
(a)
1
2
(b)
3
2
(c)
3
2
(d) none of these
Q 29. The value of
2
1 1 x 1
2tan
x
  
is equal to
(a) cot–1 x (b) sec–1 x (c) tan–1 x (d) none of these
Q 30. The value of 2tan–1 1
1 1
tan
3 7

 is
(a)
4

(b)
2

(c)  (d) none of these
Q 31. The value of cot–13 + cosec–1+ 5 is
(a)
3

(b)
2

(c)
4

(d) none of these
Q 32. sin cot–1tan cos–1x is equal to
CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
(a) x (b) 2
1 x
 (c)
1
x
(d) none of these
Q 33. The value of tan–1 1 1 1
1 1 1 1
tan tan tan
3 5 7 8
  
   is
(a)  (b)
4

(c)
3
4

(d) none of these
Q 34. The value of tan2(sec–12) + cot2(cosec–13) is
(a) 13 (b) 15 (c) 11 (d) none of these
Q 35. tan 1 1
1 1
cos x tan cos x ,x 0
4 2 4 2
 
 
   
   
   
   
, is equal to
(a) x (b) 2x (c)
2
x
(d) none of these
Q 36. The number of real solution of the equation is 1
1 cos2x 2 sin (sinx), x ,

     
(a) 0 (b) 1 (c) 2 (d) infinite
Q 37. The number of real solutions of tan–1 1 2
x(x 1) sin x x 1
2
 
     is
(a) zero (b) one (c) two (d) infinite
Q 38. The number of positive integral solutions of the equation is 1 1 1
2
y 3
tan x cos sin
10
1 y
  
 

(a) one (b) two (c) zero (d) none of these
Q 39. Considering principal values, the number of solutions of
1 1
tan 2x tan 3x
4
  
 
(a) two (b) three (c) one (d) none of these
Q 40. The number of real solutions of (x, y), where |y| = sin x, y = cos–1 (cos x), –2 ≤ x ≤ 2, is
(a) 2 (b) 1 (c) 3 (d) 4
Q 41. If cos–1 x > sin1 x then
(a) x < 0 (b) – 1 < x < 0 (c) 0 ≤ x <
1
2
(d) – 1 ≤ x <
1
2
Q 42. If cot–1 n
6



,n  N, then the maximum value of n is
(a) 1 (b) 5 (c) 9 (d) none of these
Q 43. The set of values of k for which x2  kx + sin1 (sin 4) > 0 for all real x is
(a)  (b) (2, 2) (c) R (d) none of these
CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
Type 2
Choose the correct options. One or more options may be correct.
Q 44. Let f(x) = sin–1 x + cos–1 x. Then
2

is equal to
(a)
1
f
2
 

 
 
(b) f(k2 – 2k + 3), k (c) 2
1
f ,k R
1 k
 

 

 
(d) f(–2)
Q 45. At x =
3
2
, the value is real for
(a) tan–1x (b) cosec–1x (c) cos–12x (d) none of these
Q 46. If
1
2
< |x| < 1 then which of the following are real?
(a) sin–1x (b) tan–1x (c) sec–1x (d) cos–1x
Q 47. Let tan–1 1 2
tan ,tan tan .
4 3

 
   
    
   
   
.Then
(a)  <  (b) 4 – 3 = 0 (c)  +  =
7
12

(d) none of these
Q 48. Let f(x) =
1
cos sin(x / 3)
e


. Then
(a) 5 /18
8
f e
9


 

 
 
(b) 13 /18
8
f e
9


 

 
 
(c) /12
7
f e
4


 
 
 
 
(d) 11 /12
7
f e
4


 
 
 
 
Q 49. If f(x) = cos–1 x + cos–1 2
x 1
3 3x
2 2
 
 
 
 
then
(a)
2
f
3 3

 

 
 
(b) 1
2 2
f 2cos
3 3 3
 
 
 
 
 
(c)
1
f
3 3

 

 
 
(d)
1
1 1
f 2cos
3 3 3
 
 
 
 
 
Q 50. The value of tan
2
1 1
2 2
1 2x 1 1 x
sin cos
2 2
1 x 1 x
 
 


 
 
 
is
(a) 2
2x
1 x

if 0 ≤ x ≤ 1 (b) 2
2x
1 x

if x > 1 (c) not finite if x > 1 (d) none of these
Q 51. ,  and  are three angles given by
 = 2 tan–1 ( 2 – 1),  = sin–1 1
1 1
sin
2
2
  
 
 
 
and  cos–1 1
3
. Then
(a)  >  (b)    (c)  <  (d) none of these
Q 52. If 0 < x < 1 then tan1-
2
1 x
1 x


is equal to
CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T)
STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM
ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII +
MISHAL CHAUHAN (M.Tech, IIT Delhi)
Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham
Contact: 9879639888 Email:sthitpragyaclasses@gmail.com
(a) 1
1
cos x
2

(b) 1 1 x
cos
2
 
(c) 1 1 x
sin
2
 
(d) none of these
Q 53. One of the values of x satisfying tan (sec1 x) = sin cos1 1
5
is
(a)
5
3
(b)
3
5
(c)
5
3
 (d)
3
5

Q 54. If sin1 x + sin1y =
2
3

, cos1 x  cos1y =
3

then the number of values of (x, y) is
(a) two (b) four (c) zero (d) none of these
Q 55. The solution set of the equation cos1 x  sin1 x = sin1(1  x) is
(a) [1, 1] (b)
1
0,
2
 
 
 
(c) [1, 0] (d) none of these
Answers
1b 2c 3c 4d 5d 6a 7c 8a 9d 10a
11b 12c 13b 14b 15a 16d 17d 18c 19b 20c
21b 22b 23b 24a 25a 26c 27b 28b 29c 30a
31c 32a 33b 34c 35c 36c 37c 38b 39a 40c
41d 42b 43a 44a,c 45a,b 46a,b,d 47b,c 48b,c
49a,d 50a,c 51b,c 52a,b,c 53b,d 54d 55d

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Class xii inverse trigonometric function worksheet (t)

  • 1. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com Q 1. If  satisfies the inequation x2 – x – 2 > 0 then a value exists for (a) sin–1  (b) sec–1 (c) cos–1 (d) none of these Q 2. If   are roots of the equation 6x2 11 + 3 = 0 then (a) both cos–1  and cos–1 are real (b) both cos–1  and cos–1  are real (c) both cot–1  and cot–1 and are real (d) none of these Q 3. Let f(x) = sec–1x tan–1x. Then f(x) is real for (a) x  [–1, 1] (b) x  R (c) x  (–, –1]  [1, ) (d) none of these Q 4. If cos–1 x – sin–1 x = 0 then x is equal to (a) 1 2  (b) 1 (c) 2 (d) 1 2 Q 5. cosec–1 (cos x) is real if (a) x  [–1, 1] (b) x  R (c) x is an odd multiple of 2  (d) x is a multiple of  Q 6. The principal value of sin–1 5 sin 6        is (a) 6  (b) 5 6  (c) 7 6  (d) none of these Q 7. The principal value of cos–1 7 sin 6         is (a) 5 3  (b) 7 6  (c) 3  (d) none of these Q 8. The principal value of sin–1 3 cos sin 1 2                    is (a) 6  (b) 3  (c) 3   (d) none of these Q 9. The principal value of cos–1 1 9 9 sin 10 10 2                is (a) 3 20  (b) 1 2  (c) 1 (d) none of these Q 10. The value of cos 1 15 tan tan is 4               (a) 1 2 (b) 1 2  (c) 1 (d) none of these Q 11. 2 5   is the principal value of
  • 2. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com (a) 1 7 cos cos 5         (b) 1 7 sin sin 5         (c) 1 7 sec sec 5         (d) none of these Q 12. If cos–1  + cos–1 + cos–1 v = 3 then  + v +  is equal to (a) – 3 (b) 0 (c) 3 (d) – 1 Q 13. If 10 1 i i 1 cos x 0     then 10 i i 1 x   is (a) 0 (b) 0 (c) 5 (d) none of these Q 14. If 2n 1 i i 1 sin x n      then 2n i i 1 x   is equal to (a) n (b) 2n (c) n(n 1) 2  (d) none of these Q 15. The value of cos–1 1 1 3 sin 2 2                  is (a) 3  (b) 0 (c) 2 3  (d) none of these Q 16. The value of tan 1 1 2tan 5 4          is (a) 0 (b) 1 (c) 7 17 (d) none of these Q 17. The formula cos–1 2 1 2 1 x 2tan 1 x     x holds only for (a) x  R (b) |x| ≤ 1 (c) x  (–1, 1] (d) x  [1, +) Q 18. tan–1a + tan–1b, where a > 0, b > 0 ab > 1, is equal to (a) 1 a b tan 1 ab    (b) 1 a b tan 1 ab      (c) 1 a b tan 1 ab      (d) none of these Q 19. The set of values of x for which tan–1 1 2 x sin x 1 x    hold is (a) R (b) [–1, 1] (c) [0, 1] (d) [–1, 0] Q 20. 2 1 2 2 1 1 1 x x cos x 1 x . 1 cos xcos x 2 4 2                  hold is (a) |x| ≤ 1 (b) x  R (c) 0 ≤ x < 1 (d) –1 ≤ x < 0 Q 21. If (x) = sin–1 2 3 1 1 x 1 x , x 1, 2 2 2               then f(x) is equal to
  • 3. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com (a) 1 1 1 sin sin x 2    (b) 1 sin x 6    (c) 1 sin x 6    (d) none of these Q 22. The formula 2sin–1 x = sin 2 (2x 1 x )  holds for (a) x  [0, 1] (b) 1 1 x , 2 2         (c) x  (–1, 0) (d) 3 3 x , 2 2           Q 23. cos–1 (cos x) = x is satisfied by (a) x  R (b) x  [0, ] (c) x  [–1, 1] (d) none of these Q 24. If 2tan–1x + sin–1 2 2x 1 x  is independent of x then (a) x  [1, ) (b) x  [–1, 1] (c) x  (–, –1) (d) none of these Q 25. If tan–12, tan–13 are angles of a triangle then the third angle is (a) 4  (b) 3 4  (c) 2  (d) none of these Q 26. 3 1 n 1 1 tan n    is equal to (a) 0 (b)  (c) 2  (d) none of these Q 27. The value of tan 1 1 4 2 cos sin 5 13                      is (a) 7 16 (b) 17 6 (c) 6 17 (d) none of these Q 28. If sin–1 x cos–1 x x 6  then x is (a) 1 2 (b) 3 2 (c) 3 2 (d) none of these Q 29. The value of 2 1 1 x 1 2tan x    is equal to (a) cot–1 x (b) sec–1 x (c) tan–1 x (d) none of these Q 30. The value of 2tan–1 1 1 1 tan 3 7   is (a) 4  (b) 2  (c)  (d) none of these Q 31. The value of cot–13 + cosec–1+ 5 is (a) 3  (b) 2  (c) 4  (d) none of these Q 32. sin cot–1tan cos–1x is equal to
  • 4. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com (a) x (b) 2 1 x  (c) 1 x (d) none of these Q 33. The value of tan–1 1 1 1 1 1 1 1 tan tan tan 3 5 7 8       is (a)  (b) 4  (c) 3 4  (d) none of these Q 34. The value of tan2(sec–12) + cot2(cosec–13) is (a) 13 (b) 15 (c) 11 (d) none of these Q 35. tan 1 1 1 1 cos x tan cos x ,x 0 4 2 4 2                     , is equal to (a) x (b) 2x (c) 2 x (d) none of these Q 36. The number of real solution of the equation is 1 1 cos2x 2 sin (sinx), x ,        (a) 0 (b) 1 (c) 2 (d) infinite Q 37. The number of real solutions of tan–1 1 2 x(x 1) sin x x 1 2        is (a) zero (b) one (c) two (d) infinite Q 38. The number of positive integral solutions of the equation is 1 1 1 2 y 3 tan x cos sin 10 1 y       (a) one (b) two (c) zero (d) none of these Q 39. Considering principal values, the number of solutions of 1 1 tan 2x tan 3x 4      (a) two (b) three (c) one (d) none of these Q 40. The number of real solutions of (x, y), where |y| = sin x, y = cos–1 (cos x), –2 ≤ x ≤ 2, is (a) 2 (b) 1 (c) 3 (d) 4 Q 41. If cos–1 x > sin1 x then (a) x < 0 (b) – 1 < x < 0 (c) 0 ≤ x < 1 2 (d) – 1 ≤ x < 1 2 Q 42. If cot–1 n 6    ,n  N, then the maximum value of n is (a) 1 (b) 5 (c) 9 (d) none of these Q 43. The set of values of k for which x2  kx + sin1 (sin 4) > 0 for all real x is (a)  (b) (2, 2) (c) R (d) none of these
  • 5. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com Type 2 Choose the correct options. One or more options may be correct. Q 44. Let f(x) = sin–1 x + cos–1 x. Then 2  is equal to (a) 1 f 2        (b) f(k2 – 2k + 3), k (c) 2 1 f ,k R 1 k         (d) f(–2) Q 45. At x = 3 2 , the value is real for (a) tan–1x (b) cosec–1x (c) cos–12x (d) none of these Q 46. If 1 2 < |x| < 1 then which of the following are real? (a) sin–1x (b) tan–1x (c) sec–1x (d) cos–1x Q 47. Let tan–1 1 2 tan ,tan tan . 4 3                     .Then (a)  <  (b) 4 – 3 = 0 (c)  +  = 7 12  (d) none of these Q 48. Let f(x) = 1 cos sin(x / 3) e   . Then (a) 5 /18 8 f e 9          (b) 13 /18 8 f e 9          (c) /12 7 f e 4           (d) 11 /12 7 f e 4           Q 49. If f(x) = cos–1 x + cos–1 2 x 1 3 3x 2 2         then (a) 2 f 3 3         (b) 1 2 2 f 2cos 3 3 3           (c) 1 f 3 3         (d) 1 1 1 f 2cos 3 3 3           Q 50. The value of tan 2 1 1 2 2 1 2x 1 1 x sin cos 2 2 1 x 1 x             is (a) 2 2x 1 x  if 0 ≤ x ≤ 1 (b) 2 2x 1 x  if x > 1 (c) not finite if x > 1 (d) none of these Q 51. ,  and  are three angles given by  = 2 tan–1 ( 2 – 1),  = sin–1 1 1 1 sin 2 2          and  cos–1 1 3 . Then (a)  >  (b)    (c)  <  (d) none of these Q 52. If 0 < x < 1 then tan1- 2 1 x 1 x   is equal to
  • 6. CLASS XII INVERSE TRIGONOMETRIC FUNCTION WORKSHEET (T) STHITPRAGYA SCIENCE CLASSES, GANDHIDHAM ADVANCED MATHEMATICS FOR JEE | BITSAT| GUJCET| OLYMPIADS | IX, X, XI, XII, XII + MISHAL CHAUHAN (M.Tech, IIT Delhi) Address 1: Near Gayatri Mandir, Opp. PGVCL Office, Shaktinagar Address 2: Sec-5, G.H.B, Gandhidham Contact: 9879639888 Email:sthitpragyaclasses@gmail.com (a) 1 1 cos x 2  (b) 1 1 x cos 2   (c) 1 1 x sin 2   (d) none of these Q 53. One of the values of x satisfying tan (sec1 x) = sin cos1 1 5 is (a) 5 3 (b) 3 5 (c) 5 3  (d) 3 5  Q 54. If sin1 x + sin1y = 2 3  , cos1 x  cos1y = 3  then the number of values of (x, y) is (a) two (b) four (c) zero (d) none of these Q 55. The solution set of the equation cos1 x  sin1 x = sin1(1  x) is (a) [1, 1] (b) 1 0, 2       (c) [1, 0] (d) none of these Answers 1b 2c 3c 4d 5d 6a 7c 8a 9d 10a 11b 12c 13b 14b 15a 16d 17d 18c 19b 20c 21b 22b 23b 24a 25a 26c 27b 28b 29c 30a 31c 32a 33b 34c 35c 36c 37c 38b 39a 40c 41d 42b 43a 44a,c 45a,b 46a,b,d 47b,c 48b,c 49a,d 50a,c 51b,c 52a,b,c 53b,d 54d 55d