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The three stages in the development of a full tropical cyclone are formative, mature, and A. frontal. B. cumulus. C. cyclonic. D. dissipation.
The three stages in the development of a full tropical cyclone are formative, mature, and dissipation.
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Asked 1/22/2019 7:30:11 AM
Updated 10/30/2020 10:31:15 AM
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A steel block has a volume of 0.08 m and a density of 7,840 kg/m . What is the force of gravity acting on the block (the weight) in water? A. 5,362.56 N B. 6,150.64 N C. 7,600.18 N D. 6,700.56 N
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Updated 1/29/2022 8:22:24 AM
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A steel block has a volume of 0.08 m³ and a density of 7,840 kg/m³. Force of gravity acting on the block (the weight) in water is 6,150.64 N , density = mass/ volume , 7840 = mass / 0.08 , mass= 7840*0.08 = 627.2Kg , Force = mass*acc , Force = 627.2 * 9.8 = 6146.56 = 6,150.64 N
Added 1/29/2022 8:22:24 AM
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8. A car with a mass of 2,000 kilograms is moving around a circular curve at a uniform velocity of 25 meters per second. The curve has a radius of 80 meters. What is the centripetal force on the car? A. 15,625 N B. 703 N C. 20,250 N D. 625 N
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Updated 8/8/2021 10:43:35 PM
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m=2000 Kg v=25 m/s r=80 m F=[2000 Kg*(25 m/s)²] / 80 m=15625 N
Added 8/8/2021 10:43:35 PM
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8. A car with a mass of 2,000 kilograms is moving around a circular curve at a uniform velocity of 25 meters per second. The curve has a radius of 80 meters. What is the centripetal force on the car? A. 15,625 N B. 703 N C. 20,250 N D. 625 N
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Updated 4/19/2023 8:38:54 AM
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A car with a mass of 2,000 kilograms is moving around a circular curve at a uniform velocity of 25 meters per second. The curve has a radius of 80 meters. 15,625 N is the centripetal force on the car. Solution: CF = mv^2/r= 2000*25^2/80 CF = 15,625 N.
Added 4/19/2023 8:38:54 AM
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A stone falls from a ledge and takes 8 seconds to hit the ground. The stone has an original velocity of 0 m/s. How tall is the ledge? A. 1,254.4 meters B. 39.2 meters C. 78.4 meters D. 313.6 meters
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Updated 10/26/2020 11:30:30 PM
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A stone falls from a ledge and takes 8 seconds to hit the ground. The stone has an original velocity of 0 m/s. The ledge is 313.6 meters tall.

Solution: v = vo + at v = 0 + (9.8) (8) v = 78.4 y = 1/2 (vo + v) (t) y = 1/2 (78.4) (8) y = 1/2 (627.2) y = 313.6m.
Added 10/26/2020 11:30:30 PM
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