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Indefinite Integral
Indefinite Integral
               x n 1
1  x n dx         c
               n 1
Indefinite Integral
               x n 1
1  x n dx         c
               n 1
                      ax  b n1
2  ax  b n dx               c
                       an  1
Indefinite Integral
               x n 1
1  x n dx         c
               n 1
                      ax  b n1      must be a linear function 
2  ax  b n dx               c
                       an  1
Indefinite Integral
                  x n 1
   1  x n dx         c
                  n 1
                         ax  b n1      must be a linear function 
   2  ax  b n dx               c
                          an  1


e.g. i  2  5 x  dx
                   3
Indefinite Integral
                  x n 1
   1  x n dx         c
                  n 1
                         ax  b n1           must be a linear function 
   2  ax  b n dx               c
                          an  1

                             1
e.g. i  2  5 x  dx 
                  3
                                  2  5 x 4  c
                           4 5
                             1
                           2  5 x   c
                                         4

                             20
dx
ii 
       3x  12
dx
ii                3 x  1 dx
                              2

       3x  12
dx
ii                3 x  1 dx
                               2

       3x  12
                       1
                       3x  11  c
                       3
                        1
                               c
                     33 x  1
dx
ii                3 x  1 dx
                               2

       3x  12
                       1
                       3x  11  c
                       3
                        1
                               c
                     33 x  1

iii   2 x  1dx
dx
ii                3 x  1 dx
                               2

       3x  12
                       1
                       3x  11  c
                       3
                        1
                               c
                     33 x  1

iii   2 x  1dx   2 x  1 dx
                                1
                                2
dx
ii                3 x  1 dx
                               2

       3x  12
                       1
                       3x  11  c
                       3
                        1
                               c
                     33 x  1

iii   2 x  1dx   2 x  1 dx
                                1
                                2


                        2            3
                           2 x  12  c
                      32 
                      1           3
                     2 x  12  c
                      3
                      1
                     2 x  1 2 x  1  c
                      3
dx
ii                3 x  1 dx
                               2

       3x  12
                       1
                       3x  11  c
                       3
                        1
                               c
                     33 x  1

iii   2 x  1dx   2 x  1 dx
                                1
                                2
                                              Exercise 11D; 1bei, 2bcg,
                       2              3
                          2 x  1  c      4afh, 5cfi, 6ceh, 7bfil, 8*
                     32 
                                      2


                     1           3
                     2 x  12  c
                     3
                     1
                     2 x  1 2 x  1  c
                     3

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12 x1 t01 01 log laws (2013)12 x1 t01 01 log laws (2013)
12 x1 t01 01 log laws (2013)
 
X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)
 
X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)
 
X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)
 
X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)
 
11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)
 
11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)
 
11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)
 
11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)
 
11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)
 
11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)
 

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11X1 T14 03 indefinite integral

  • 2. Indefinite Integral x n 1 1  x n dx  c n 1
  • 3. Indefinite Integral x n 1 1  x n dx  c n 1 ax  b n1 2  ax  b n dx  c an  1
  • 4. Indefinite Integral x n 1 1  x n dx  c n 1 ax  b n1 must be a linear function  2  ax  b n dx  c an  1
  • 5. Indefinite Integral x n 1 1  x n dx  c n 1 ax  b n1 must be a linear function  2  ax  b n dx  c an  1 e.g. i  2  5 x  dx 3
  • 6. Indefinite Integral x n 1 1  x n dx  c n 1 ax  b n1 must be a linear function  2  ax  b n dx  c an  1 1 e.g. i  2  5 x  dx  3 2  5 x 4  c 4 5 1   2  5 x   c 4 20
  • 7. dx ii  3x  12
  • 8. dx ii    3 x  1 dx 2 3x  12
  • 9. dx ii    3 x  1 dx 2 3x  12 1  3x  11  c 3 1  c 33 x  1
  • 10. dx ii    3 x  1 dx 2 3x  12 1  3x  11  c 3 1  c 33 x  1 iii   2 x  1dx
  • 11. dx ii    3 x  1 dx 2 3x  12 1  3x  11  c 3 1  c 33 x  1 iii   2 x  1dx   2 x  1 dx 1 2
  • 12. dx ii    3 x  1 dx 2 3x  12 1  3x  11  c 3 1  c 33 x  1 iii   2 x  1dx   2 x  1 dx 1 2 2 3  2 x  12  c 32  1 3  2 x  12  c 3 1  2 x  1 2 x  1  c 3
  • 13. dx ii    3 x  1 dx 2 3x  12 1  3x  11  c 3 1  c 33 x  1 iii   2 x  1dx   2 x  1 dx 1 2 Exercise 11D; 1bei, 2bcg, 2 3  2 x  1  c 4afh, 5cfi, 6ceh, 7bfil, 8* 32  2 1 3  2 x  12  c 3 1  2 x  1 2 x  1  c 3