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Your team at the lab has developed a new and hopefully non-toxic liquid, named gloop by marketing, to be used in swimming pools. Gloop is

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Your team at the lab has developed a new and hopefully non-toxic liquid, named gloop by marketing, to be used in swimming pools. Gloop is denser than water, so it provides more buoyancy for swimming. (1) RNG An uwary visitor to the lab drops their tablet into an open tank of gloop. The gloop's density is 2000- 4000 kg/m', and the tank is 5-10 m deep. Calculate the total pressure the phone experiences at the bottom of the gloop tank. Keep in mind: we have an atmosphere! (2) RNG Choose a reasonable length Z and width W for the tablet's screen (in SI units, to 3 SP), then calculate the force on the tablet's screen due to the pressure of the gloop. (3) MVQ. RNG Next, you'll be dipping a solid ball into the gloop. The ball is either plastic (mass m - 0.3-0.5 ky, radius y - 5-8 ci) if the 2"-to-last digit of your phone number is even, or metal (odd digit, A - 50-60 kg. R= 11-13 cm). Calculate the ball's density! Zip. convert umis first (4) Would the ball float or sink if dropped into the gloop" Explain in 1-2 sentences, but no further calculations. (5) MVQ If you found that the ball would float in gloop, you're now going to push down on it, holding it at rest partly submerged, lower in the gloop than it would naturally float. Or, if you found that the ball would sink in the gloop, you're going to support it from below so that it's partly submerged State your version, then draw a complete FBD for the ball as you hold if at rest in this partly submerged state. (6) RNG Calculate the amount of force you have to exert to keep the ball submerged with 50-70% of its volume below the surface. Tip: this is not equal to the buoyant force. so if your E'BD suggests otherwise, the FBD is incomplete. List your random .o and then start from N21, showing all steps as usual for N21.. (7) RNG The gloop in the tank will be pumped out through a hose to rescue the tablet. Gloop flows through the hose at a speed of 3-6 w/s, and the hose diameter is 1-6 cm. At the end of the hose is a nozzle with a diameter da - 2.00 cm. Calculate the speed of the gloop spraying out of the nozzle (8) RNG The hose is attached to the pump at ground level, and the nozzle is 5-10 m above the ground and open to the atmosphere. Calculate the total pressure in the hose at the pump end

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