(a) Develop the circuit corresponding to Illustration 151 by means of the module "Cut out".

(b) Investigate the frequency spectrum according to Illustration 151 experimentally using DASYLab. Set the values so that the instantaneous frequency begins at t = 0s and the other ends at t = 1 s. Therefore, select f = 2,4,8 Hz and all the instantaneous frequencies as a power of two. The block length and sampling rate should be set as in the past at the standard setting of 1024.

(c) Create the circuit corresponding to Illustration 152 and Illustration 153. As the source signal take lowpass filtered noise.

(d) Develop an AM generator with which by means of a manual regulator the carrier frequency fcarrier, the signal amplitude ÛLF and the offset can be set.

(e) Develop an AM generator by means of the module "formula interpreter" which implements the AM formula given on page 236 and with which the degree of modulation m, fLF and fcarrier can be set. Select ÛLF = 1 V

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Develop an am generator by means of the module : Develop an AM generator by means of the module "formula interpreter" which implements the AM formula given on page 236 and with which the degree of modulation m, fLF and fcarrier can be set. Select ÛLF = 1 V |

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Identify new questions you have now that you have discovered : Identify new questions you have now that you have discovered more about the issue. Explain how you might apply the critical analysis and research skills you have been practicing this week to your student and professional roles. |

Find greatest load-carrying capacity : A 1.2m long book shelf is to be supported by two wall brackets. How far apart should the brackets be to give the greatest load-carrying capacity? |

Develop a process by means of the module : Develop a process by means of the module „formula interpreter" with which a sinusoidal input voltage with the amplitude I V of any frequency f always produces a sinusoidal output voltage with the fourfold frequency 4∗f. The output voltage should h.. |

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## Explain how the ideal op amp is a high-gain amplifierThe current through a branch in a linear network is 2 A when the input source is 10 V. If the voltage is reduced to 1 V and the polarity is reversed, the current through the branch is a. - 2 A b. - 0.2 A c. 0.2 A |

## How many of the errors change the characters parityHow many of these errors change the character's parity How many are detected 2) Determine whether the nor operator ~ defined by a ? b = (a+b)' is associative, commutative, or distributive over +.(show and prove them all) 3) Simplify the 3-input bo.. |

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