dy differential equation exactly. x = 2x - 5;x = 0 to x = 1;4x = 0.2;(0,4) Using Euler's method, complete the following table. \table [[x,0.0, 0.2, 0.4, 0.6, 0.8, 1.0], [y, 4.00,,,,,]] (Round to two decimal places as needed.) An electric circuit contains a 1-H inductor, a 5-92 resistor, and a voltage source of sint. The resulting differential equation relating the current i and the time t is di/dt + 5i= sin t. Find i after 0.5 s by Euler's method with At = 0.1 s if the initial current is zero. Solve the equation exactly and compare the values. Use Euler's method to find i after 0.5 s. approx = A (Round the final answer to four decimal places as needed. Round all intermediate values to nine decimal places as needed.)

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differential equation exactly. x = 2x - 5;x = 0 to x = 1;4x = 0.2;(0,4) Using Euler's method, complete the following table. \table [[x,0.0, 0.2, 0.4, 0.6, 0.8, 1.0], [y, 4.00,,,,,]] (Round to two decimal places as needed.)
An electric circuit contains a 1-H inductor, a 5-92 resistor, and a voltage source of sint. The resulting differential equation relating the current i and the time t is di/dt + 5i= sin t. Find i after 0.5 s by Euler's
method with At = 0.1 s if the initial current is zero. Solve the equation exactly and compare the values.
Use Euler's method to find i after 0.5 s.
approx = A
(Round the final answer to four decimal places as needed. Round all intermediate values to nine decimal places as needed.)
Transcribed Image Text:dy differential equation exactly. x = 2x - 5;x = 0 to x = 1;4x = 0.2;(0,4) Using Euler's method, complete the following table. \table [[x,0.0, 0.2, 0.4, 0.6, 0.8, 1.0], [y, 4.00,,,,,]] (Round to two decimal places as needed.) An electric circuit contains a 1-H inductor, a 5-92 resistor, and a voltage source of sint. The resulting differential equation relating the current i and the time t is di/dt + 5i= sin t. Find i after 0.5 s by Euler's method with At = 0.1 s if the initial current is zero. Solve the equation exactly and compare the values. Use Euler's method to find i after 0.5 s. approx = A (Round the final answer to four decimal places as needed. Round all intermediate values to nine decimal places as needed.)
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