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Answer the following information by showing all the necessary actions. When delivering your homework, pay attention to the issues regarding food: Box your final

Answer the following information by showing all the necessary actions. When delivering your homework, pay

Answer the following information by showing all the necessary actions. When delivering your homework, pay attention to the issues regarding food: Box your final answer My name and surname should be stated in the upper right corner, Signals and Systems Course - Assignment 1' should be stated in the upper left corner Answer sheets are delivered neatly, sorted correctly and stapled. Answers that are not legible and not organized will not be distributed. 1 Question 1 (20 points) For the signal whose graph is given below Machine Translated by Google -1 a) Provide detail of the signal. (10 points) b) repeat the signal for x(21). 5 points) c) Repeat the signal for x(2 t). (5 points) 2 Question 2 (10 points) x(t) 1 Figure 1: x(t) signal Show that a double signal and a single signal are single signals. 3 5 b) is it a periodic signal for y= 2 and 93? If it is a periodic signal, in the signal period find it. (5 points) x(t)= exp(st) such that s= y + 19 and 3 Questions 3 (20 points) For the signal x(t) given below. a) For y = 2 and y=3, separate the signal into odd and even components, these components are odd and even signals. show. (10 points) < < c) For 9 = 2 and y= 0 (only real component is present) whether the signal is an energy signal or a power signal specity. (5 points) 6 t a) Total time response of the system to the signal f(t)= exp(21)u(t) applied to its input find 4 Questions 4 (30 points) A mass spring damper application is given as mass m= 1kg. spring constant k = 2 and damper b=3. The system initially has the conditions x(0)=0, x(0) = 0. Accordingly, by time analysis, b) By comparing the accuracy of your result with the result of the MATLAB/Simulink model: gesternize 5 Questions 5 (20 points) Analyze the time response of the system to the input given in Question 4 in the Laplace domain and compare your result with the result you obtained in Question 4.

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