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sergij07 [2.7K]
2 years ago
12

Describe why the scenario below fails to meet the criteria for proper reverse engineering.

Engineering
1 answer:
salantis [7]2 years ago
4 0

The scenario does not meet the criteria for proper reverse engineering because reverse engineering is the reverse process of assembly.

<h3>What does reverse engineering do?</h3>

Reverse Engineering is the name given to the process of exploring an object that consists of “deconstructing” it. In other words, dismantling an object to study it. For example, when a child takes the toy apart to understand how it works, he is practicing Reverse Engineering.

With this information, we can conclude that the scenario does not meet the criteria for proper reverse engineering because this type of engineering is the reverse process of assembly.

Learn more about reverse engineering in brainly.com/question/10175918

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3 years ago
A microwave transmitter has an output of 0.1W at 2 GHz. Assume that this transmitter is used in a microwave communication system
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Answer:

gain = 353.3616

P_r = 1.742*10^-8 W

Explanation:

Given:

- The output Power P_o = 0.1 W

- The diameter of the antennas d = 1.2 m

- The frequency of signal f = 2 GHz

Find:

a. What is the gain of each antenna?

b. If the receiving antenna is located 24 km from the transmitting antenna over a free space path, find the available signal power out of the receiving antenna.

Solution:

- The gain of the parabolic antenna is given by the following formula:

                            gain = 0.56 * 4 * pi^2 * r^2 / λ^2

Where, λ : The wavelength of signal

            r: Radius of antenna = d / 2 = 1.2 / 2 = 0.6 m

- The wavelength can be determined by:

                            λ = c / f

                            λ = (3*10^8) / (2*10^9)

                            λ = 0.15 m

- Plug in the values in the gain formula:

                            gain = 0.56 * 4 * pi^2 * 0.6^2 / 0.15^2

                            gain = 353.3616

- The available signal power out from the receiving antenna is:

                            P_r = (gain^2 * λ^2 * W) / (16*pi^2 * 10^2 * 10^6)

                            P_r = (353.36^2 * 0.15^2 * 0.1) / (16*pi^2 * 10^2 * 10^6)

                            P_r = 1.742*10^-8 W

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3 years ago
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Answer:

The correct option is;

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A system such as a capacitor with an high power density has the capacity to put out large energy amount from a small volume. A capacitor with a high power density, can produce the same power output as a car battery and is said to have a high power density.

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