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For the Initial Value Problem, Compute the First Two Approximations Δ\Delta

Question 25

Multiple Choice

For the initial value problem, compute the first two approximations  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 and  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 given by Euler's method using the given time step.
-y'(t) = -y, y(0) = -3; Δ\Delta t = 0.1


A)  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2;  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = - 2.61
B)  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2.7;  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2.7
C)  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2.7;  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2.43
D)  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -3;  For the initial value problem, compute the first two approximations   and   given by Euler's method using the given time step. -y'(t)  = -y, y(0)  = -3;  \Delta t = 0.1 A)    = -2;   = - 2.61 B)    = -2.7;   = -2.7 C)    = -2.7;   = -2.43 D)    = -3;   = -2.7 = -2.7

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