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0:03:15
Lecture#113:Find the Arc Length of Y=f(x) over the Interval I=[0 1]
0:03:24
Lecture#112:Find the Length of the Curve Y=f(x)
0:08:54
Lecture#111:Find the Area between the Curve Y=f(x) & Y=g(x)
0:09:02
Lecture#110:Arc Length(Length of Plane Curve)
0:05:11
Lecture#109:Calculate the Area between the Curve Y=f(x)=x and Y=g(x)=x^2+1 over the Interval [-1 2]
0:06:08
Lecture#108:Calculate the Area between the Curvesf(x) and g(x) over the Interval [0 2]
0:03:20
Lecture#107:Calculate Area between two Curves
0:13:00
Lecture#131:Diagonalize the Matrix A
0:00:32
Lecture#130:Diagonalization of a Square Matrix
0:05:40
Lecture#129:Theorem A square Matrix A is invertible Iff each Eigen Value of A is non-zero
0:02:39
Lecture#128:Counter Example on Lecture#124
0:05:36
Lecture#127:Cayley Hamiton theorem
0:09:38
Lecture#126:Find the Eigen Values and Eigen Vectors for Matrix A
0:03:05
Lecture#125:Find Eigen Value & Eigen vector of a given Matrix A
0:04:43
Lecture#124:Theorem:h^k an Eigen value of a Matrix A^k,If h is an Eigen value of a Matrix A
0:02:22
Lecture#123:Theorem:-the Eigen Values of a Triangular Matrix A are the diagonal elements of Matrix A
0:01:56
Lecture#120:Definition of Characteristic equation
0:10:13
Lecture#119A:Characteristic equation lA-xIl=0 of a Square Matrix A
0:07:30
Lect#118:Eigen Values and Eigen Vector's of a Square Matrix
0:01:05
Prove that loga(MN)=loga(M)+loga(N)
0:01:05
Lecture#07:Prove that Cos(A+B)=Cos(A)Cos(B)-Sin(A)Sin(B)
0:01:40
Lecture#05:4th Formula in Fundamental law of Trigonometry
0:01:51
Lecture#04Deduction from fundamental law of Trigonometry.Prove that Cos(-A)=Cos(A) & Sin(-A)=-Sin(A)
0:02:37
Lecture#03:3rd Formula in Fundamental law of Trigonometry
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