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Question 1 1 pts A 10cmx10cmx10cm cube of density 750 kg/m and is submerged in a...
A 10cmx10cmx10cm cube of density 650 kg / (m ^ 3) and is submerged in a container filled with water of density 1000 kg / (m ^ 3) . It is initially held at rest by a string which is attached to the bottom of the container, as shown in the figure. When we cut the string, the cube starts moving upwards. Find the initial acceleration of the cube, immediately after it is released. Answer in units of m/s^ 2
Show Instructions Question 1 1 pts A 10cmx10cmx10cm cube of density 650 kg/m3 and is submerged in a container filled with water of density 1000 kg/m3. It is initially held at rest by a string which is attached to the bottom of the container, as shown in the figure. When we cut the string, the cube starts moving upwards. Find the initial acceleration of the cube, immediately after it is released. Answer in units of m/s2 O 15.1 O 8.02...
A 10cmx10cmx10cm cube of density 650 kg/m3 and is submerged in a container filled with water of density 1000 kg/m3. It is initially held at rest by a string which is attached to the bottom of the container, as shown in the figure. When we cut the string, the cube starts moving upwards. Find the initial acceleration of the cube, immediately after it is released. Answer in units of m/s2.
A 8.02 B 13.1 C 15.1 D 17.8 E 5.28 F 3.27 A 10cmx10cmx10cm cube of density 550 kg/m2 and is submerged in a container filled with water of density 1000 kg/m3. It is initially held at rest by a string which is attached to the bottom of the container, as shown in the figure. When we cut the string, the cube starts moving upwards. Find the initial acceleration of the cube, immediately after it is released. Answe in units...
A 10xcmx10cmx10cm cube of density 650 kg/m^3 and is submerged in a container filled with water of density of 1000 kg/m^3. it is initially held at rest by a string which is attached to the bottom of the container. When we cut the string, the cube starts moving upwards. Find the initial acceleration of the cube, immediately after its release. Answer in units of m/s^
show work please O Question 1 A 10cmx10mx10am aibe ol density 650 kg/m and is submerged in a container filled with water of density 1000 kem? It is initially held at rest by a string which is attached to the bottom of the container, as shown in the figure When we cut the string, the cube starts moving upwards Find the initial acceleration of the cube, immediately after it is released Answer in units of mys?
1 pts Question 5 Water is flowing through a circular pipe with a radius of 0.50 m at 5.60 m/s. If the pipe's radius tapers down to 0,40 m, what is the speed of water through the narrower end? Answer in m/s. 8.73 8.00 6.00 7.65 05.10 7.00 1 pts Question 6 Hide Stop sharing ard" Il app.honorlock.com is sharing your screen. MacBook Pro с o G Search or type URL ☆ 8
Question 12 1 pts Tony has a mass of 75 kg and is doing skateboard tricks on a half pipe ramp. At the apex of one trick, he is motionless at a height h-50 meters above the bottom of the ramp. He falls off the skateboard while landing and slides while dissipative forces do -2900 J of work on him before he stops. What is his height hz from the bottom of the ramp when he stops? Answer in meters....
413 Question 10 1 pts Two blocks on a frictionless table are held at rest with a compressed spring between them. When the blocks are released, the spring pushes them apart and they move in opposite directions. The spring has a spring constant of 215 N/m. One of the blocks moves away at 0.45 m/s while the other moves away at 0.90 m/s. The heavier of the two blocks has a mass of 1.4 kg. How far was the spring...
0.94 Question 1 pts Trebuchets are widely recognized to be the superior siege engine. While launching its payload, the trebuchet moves a 90 kg stone a total of 25.0 m. The stone leaves the trebuchet 15.0 m above the ground where it was initially at rest. If the trebuchet can exert an average force of 2500 N on the stone during launch, how fast is the 90 kg stone moving as it is released in m/s? (Consider the force to...