Suppose that, in your final project, you have been asked to design an autonomous boat that...
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Suppose that, in your final project, you have been asked to design an autonomous boat that can communicate offshore through satellite communication. For the first stage of your prototyping. you want to design the body of the boat and know how much weight it can carry. This is so important stage because you can decide the number, type, and model of equipment that can be sensors and transducers, Arduino or Raspberry PI, telecommunication modules, power supply, batteries, charger, PV cells, etc. In the first stage, the body of your prospective autonomous boat is assumed to be very primitive. For that, the body is made of cork whose density equals Pe kg/m. An illustration is shown below. For safety reasons, = 1000 kg/m). This is important to ensure that all your calculations are based on the lowest buoyant force. The cork dimensions are w xl xh. For this tiny phase of your project, your supervisor has asked you to determine the maximum mass of equipment (in kg) the boat can hold before completely sinking mounted on the boat; such as It is assumed that the density of seawater equals that of pure water (P Cork Each group is assigned to use the following parameters: Dimensions & Properties Po (kg/m) w (cm) (cm) h (cm) Group Number 4. 60 80 70 100 90 300 400 350 S00 450 600 800 700 1000 900 27 15 18 25 19 Suppose that, in your final project, you have been asked to design an autonomous boat that can communicate offshore through satellite communication. For the first stage of your prototyping. you want to design the body of the boat and know how much weight it can carry. This is so important stage because you can decide the number, type, and model of equipment that can be sensors and transducers, Arduino or Raspberry PI, telecommunication modules, power supply, batteries, charger, PV cells, etc. In the first stage, the body of your prospective autonomous boat is assumed to be very primitive. For that, the body is made of cork whose density equals Pe kg/m. An illustration is shown below. For safety reasons, = 1000 kg/m). This is important to ensure that all your calculations are based on the lowest buoyant force. The cork dimensions are w xl xh. For this tiny phase of your project, your supervisor has asked you to determine the maximum mass of equipment (in kg) the boat can hold before completely sinking mounted on the boat; such as It is assumed that the density of seawater equals that of pure water (P Cork Each group is assigned to use the following parameters: Dimensions & Properties Po (kg/m) w (cm) (cm) h (cm) Group Number 4. 60 80 70 100 90 300 400 350 S00 450 600 800 700 1000 900 27 15 18 25 19
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