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1:58
3rd method to evaluate the improper integral using dilogarithm function (Mis-796AA)
2:30
2nd method to evaluate the improper integral using Feynman's technique (Mis-1717A)
1:26
Evaluating the improper integral using Laplace transform (Mis-1717)
2:07
2nd method to evaluate the definite integral using algebraic manipulation (Mis-670A)
3:28
Evaluating improper integral using Fresnel Integral (Mis-3154)
2:33
Evaluating the definite integral using algebraic manipulation (Mis-670)
3:49
2nd method to evaluate the improper integral using basic techniques (Mis-563A)
3:16
Evaluating the improper integral using basic techniques (Mis-563)
1:52
3rd method to evaluate the definite integral using basic techniques (Mis-306AA)
4:41
4th method to evaluate the Fresnel Integral using double integration (Mis-3151AA)
4:30
3rd method to evaluate the Fresnel Integral using Laplace transform and beta function (Mis-3151AA)
2:33
2nd method to evaluate the improper integral using basic techniques and Maclaurin series (Mis-796A)
3:44
3rd method to evaluate the indefinite integral using basic techniques (Mis-3152AA)
3:37
2nd method to evaluate the Fresnel Integral using Laplace transform and beta function (Mis-3151A)
2:19
2nd method to evaluate the indefinite integral using basic techniques (Mis-3152A)
4:40
2024 MIT Integration Bee, Semi Final # 1 problem # 3 (Mis-1646AAAAA)(6th method)
3:06
Evaluating the indefinite integral using basic techniques (Mis-3152)
2:21
2024 MIT Integration Bee, Semi Final # 1 problem # 3 (Mis-1646AAAA)(5th method)
5:27
Evaluating Fresnel Integral using Laplace transform (Mis-3151)
3:50
2024 MIT Integration Bee, Semi Final # 1 problem # 3 (Mis-1646AAA)(4th method)
5:29
2024 MIT Integration Bee, Semi Final # 1 problem # 3 (Mis-1646AA)(3rd method)
3:51
2024 MIT Integration Bee, Semi Final # 1 problem # 3 (Mis-1646A)(2nd method)
2:58
Evaluating the improper integral using infinite series and Gamma function (Mis-796)
2:26
2nd method to evaluate the improper integral using basic techniques (Mis-727A)
1:47
Evaluating the required product using basic techniques (SS-358)
2:17
Prove that for any integer n the number 2n^3 + 3n^2 +7n is divisible by 6 (NT-433A )(2nd method)
2:58
Prove that for any integer n the number 2n^3 + 3n^2 +7n is divisible by 6 (NT-433 )
3:19
Evaluating the improper integral using basic techniques (Mis-727)
2:43
2nd method to evaluate the improper integral using Leibniz integral rule (Mis-791A)
2:23
6th method to evaluate the definite integral using algebraic manipulation (Mis-3150AAAAA)
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