PS 2315 Table of Integrals pdf
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(2) Integrals with Logarithms Z p 1 p x2 ± a2 dx = x x2 ± a2 2 p 1 2 ± a ln x + x2 ± a2 + C 2 Z p. 1 p 2 x a − x2 2 1 x + a2 tan−1 √ +C 2 2 a − x2. Z. Z. Z. x. x2. ±. a2 dx. 3/2 1 2 x ± a2 +C = 3. ln ax 1 2 dx = (ln ax) + C x 2. (42). (30). b ln(ax + b)dx = x + ln(ax + b) − x + C, a 6= 0 (43) a Z. p. (41). (29). a2 − x2 dx =. Z. ln axdx = x ln ax − x + C. ln a2 x2 ± b2 dx = x ln a2 x2 ± b2. (31) +. Z. Z. Z p. 1 √ dx = ln x + x2 ± a2 + C 2 x ± a2 Z 1 x √ dx = sin−1 + C 2 2 a a −x Z p x √ dx = x2 ± a2 + C x2 ± a2 Z p x √ dx = − a2 − x2 + C a2 − x2 p. √. x2 1 p dx = x x2 ± a2 2 x2 ± a2 p 1 ∓ a2 ln x + x2 ± a2 + C 2. b + 2ax p 2 ax + bx + c 4a p 4ac − b2 + ln 2ax + b + 2 a(ax2 + bx+ c) + C 3/2 8a. Z. p. (32) Z (33). ln a2 − b2 x2 dx = x ln ar − b2 x2 +. (34) Z. 2a bx tan−1 − 2x + C b a. (45). 1p 2ax + b ln ax2 + bx + c dx = 4ac − b2 tan−1 √ a 4ac − b2 b + x ln ax2 + bx + c + C (46) − 2x + 2a. (35). Z. bx 1 2 − x 2a 4 1 b2 + x2 − 2 ln(ax + b) + C 2 a. x ln(ax + b)dx =. (36). Z. (47). (37). 1 x ln a2 − b2 x2 dx = − x2 + 2 1 a2 x2 − 2 ln a2 − b2 x2 + C (48) 2 b. ax2 + bx + c =. Integrals with Exponentials Z (38) Z. Z. Z. (44). ax2 + bx + cdx =. 1 √ p 2 2 a ax + bx + c 48a5/2 − 3b2 + 2abx + 8a(c + ax2 ) √ p +3(b3 − 4abc) ln b + 2ax + 2 a ax2 + bx + x. x. 2b ax tan−1 − 2x + C a b. 1 dx = + bx + c p 1 √ ln 2ax + b + 2 a(ax2 + bx + c) + C a √. ax2. x 1p 2 dx = ax + bx + c a + bx + c p b + 3/2 ln 2ax + b + 2 a(ax2 + bx + c) + C 2a. √. (39). √. (40). √ √ 1 √ ax i π xe dx = xe + 3/2 erf i ax + C, a 2a Z x 2 2 where erf(x) = √ e−t dtet π 0 Z xex dx = (x − 1)ex + C. Z. 2. 1 ax e +C a. (49). ax. Z. ax2. eax dx =. xeax dx =. . x 1 − a a2. . eax + C. x2 ex dx = x2 − 2x + 2 ex + C. (50). (51) (52) (53).
(3) Z. . 2 ax. Z. Z. e. ax. +C. (54). x3 ex dx = x3 − 3x2 + 6x − 6 ex + C. (55). x e dx = Z. 2 2x x2 − 2 + 3 a a a. 1 xn eax dx = (−1)n Γ[1 + n, −ax], a Z ∞ where Γ(a, x) = ta−1 e−t dt. Z. 1 sin3 x + C 3. cos[(2a − b)x] cos bx − 4(2a − b) 2b cos[(2a + b)x] − +C 4(2a + b). cos2 ax sin axdx = −. x. √ √ 2 i π eax dx = − √ erf ix a 2 a. Z. Z. (57). Z. 1 sin axdx = − cos ax + C a. sin2 axdx =. x sin 2ax − +C 2 4a. x sin 2ax sin[2(a − b)x] − − 4 8a 16(a − b) sin 2bx sin[2(a + b)x] + − +C 8b 16(a + b). Z. (58). sin2 ax cos2 axdx = Z. (59) Z. Z. sin axdx =. Z. 2 F1. sin3 axdx = −. 1 1−n 3 , , , cos2 ax + C 2 2 2. (60). 3 cos ax cos 3ax + +C 4a 12a. (61). Z. 1 sin ax + C a. (62). x sin 2ax + +C 2 4a. (63). cos axdx = Z. Z. cos2 axdx =. 1 cosp axdx = − cos1+p ax× a(1 + p) 1+p 1 3+p 2 , , , cos ax + C 2 F1 2 2 2 Z. Z. cos3 axdx =. 3 sin ax sin 3ax + +C 4a 12a cos[(a − b)x] − 2(a − b) cos[(a + b)x] + C, a 6= b 2(a + b). Z. Z. tan3 axdx =. (70). 1 tan ax + C a. 1 1 ln cos ax + sec2 ax + C a 2a. (71). (72) (73) (74). (75). (76). Z sec xdx = ln | sec x + tan x| + C x = 2 tanh−1 tan +C 2 Z. (64). (65). Z. sec3 xdx =. sec2 axdx =. 1 tan ax + C a. 1 1 sec x tan x + ln | sec x tan x| + C 2 2. (77). (78). (79). Z sec x tan xdx = sec x + C Z. (66) Z. sin[(2a − b)x] sin ax cos bxdx = − 4(2a − b) sin bx sin[(2a + b)x] + − +C 2b 4(2a + b). 1 tan axdx = − ln cos ax + C a. tann+1 ax tann axdx = × a(1 + n) n+3 n+1 2 , 1, , − tan ax + C 2 F1 2 2. cos ax sin bxdx =. Z. x sin 4ax − +C 8 32a. tan2 axdx = −x +. n. 1 − cos ax a. 1 cos3 ax + C 3a. (69). sin2 ax cos2 bxdx =. Integrals with Trigonometric Functions Z. (68). cos2 ax sin bxdx =. Z. (56). sin2 x cos xdx =. 2. Z. (67). csc xdx = ln tan 3. 1 sec2 x + C 2. (81). 1 secn x + C, n 6= 0 n. (82). sec2 x tan xdx =. secn x tan xdx =. (80). x + C = ln | csc x − cot x| + C 2. (83).
(4) Z. 1 csc axdx = − cot ax + C a 2. Products of Trigonometric Functions and Exponentials. (84). Z Z. 1 1 csc3 xdx = − cot x csc x + ln | csc x − cot x| + C (85) 2 2 Z Z. cscn x cot xdx = −. 1 cscn x + C, n 6= 0 n. ex sin xdx =. ebx sin axdx = Z. ex cos xdx =. ebx cos axdx =. Products of Trigonometric Functions and Monomials Z Z. Z. x 1 x cos axdx = 2 cos ax + sin ax + C a a. 1 ebx (b sin ax − a cos bx) + C (100) a2 + b2 1 x e (sin x + cos x) + C 2. (88) Z (89). 1 ebx (a sin ax + b cos ax) + C (102) a2 + b2. xex sin xdx =. 1 x e (cos x − x cos x + x sin x) + C 2. (103). xex cos xdx =. 1 x e (x cos x − sin x + x sin x) + C 2. (104). Integrals of Hyperbolic Functions. Z. 2. 2. . x cos xdx = 2x cos x + x − 2 sin x + C. (90) Z cosh axdx =. Z. 1 sinh ax + C a. (105). 2 2. x2 cos axdx =. Z. Z. 2x cos ax a x − 2 + sin ax + C a2 a3. 1 xn cosxdx = − (i)n+1 [Γ(n + 1, −ix) 2 +(−1)n Γ(n + 1, ix)] + C. 1 (ia)1−n [(−1)n Γ(n + 1, −iax) 2 −Γ(n + 1, ixa)] + C. (91). Z. (92). xn cosaxdx =. Z (93). Z x sin xdx = −x cos x + sin x + C Z x sin axdx = − Z. Z. (101). (87) Z. x cos xdx = cos x + x sin x + C. (99). (86). Z sec x csc xdx = ln | tan x| + C. 1 x e (sin x − cos x) + C 2. x cos ax sin ax + +C a a2. (94) Z (95). x2 sin xdx = 2 − x2 cos x + 2x sin x + C. (96). 2 − a2 x2 2x sin ax cos ax + +C 3 a a3. (97). x2 sin axdx =. Z. 1 xn sin xdx = − (i)n [Γ(n + 1, −ix) 2 −(−1)n Γ(n + 1, −ix)] + C. eax cosh bxdx = ax e 2 [a cosh bx − b sinh bx] + C a 6= b a − b2 2ax x e + +C a=b 4a 2 Z 1 sinh axdx = cosh ax + C a eax sinh bxdx = ax e 2 [−b cosh bx + a sinh bx] + C a − b2 2ax x e − +C 4a 2. a 6= b (108) a=b. 1 [a sin ax cosh bx + b2 +b cos ax sinh bx] + C. cos ax cosh bxdx =. 4. (107). eax tanh bxdx = (a+2b)x h i a a e 2bx F 1 + , 1, 2 + , −e 2 1 2b (a + 2b) h2ba i 1 ax 2bx e F , 1, 1E, −e − + C a 6= b (109) 2 1 a −1 ax 2b ax e − 2 tan [e ] + C a=b a Z 1 tanh bxdx = ln cosh ax + C (110) a Z. (98). (106). a2. (111).
(5) Z. 1 [b cos ax cosh bx+ + b2 a sin ax sinh bx] + C (112). cos ax sinh bxdx =. Z. Z sinh ax cosh axdx =. a2. Z 1 [−a cos ax cosh bx+ a2 + b2 b sin ax sinh bx] + C (113) 1 [b cosh bx sin ax− a2 + b2 a cos ax sinh bx] + C. sin ax sinh bxdx =. (114). 5. (115). 1 [b cosh bx sinh ax b2 − a2 −a cosh ax sinh bx] + C (116). sinh ax cosh bxdx =. sin ax cosh bxdx =. Z. 1 [−2ax + sinh 2ax] + C 4a.
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