• Part A A thin, ight string is wrapped around the rim of a 4.10 kg sold uniform disk (similar to a puck on ice without triction) that is 295 cm in diameter. A person puls on the string with a constant force of 102.5 N tangent te the disk, as shown in the figure below (Fuure 1). The disk is not attached to anything and is tree to move and tum. Find the anguiar acceleration of the disk about its center of mass. Express your answer in radiana per seconds squared to three significant figures. rad/ Submit Reevest Ana Part B Find the inear acceleration of its center of mass. Express your answer in metera per second squared to three significant figures. igure 1 of 1 回A Pull m/ Subrit neovest Anew Part C I the dsk is replaced by a hollow thinwaled eyinder of the same mass and dameter, what will be the angular acceleration of the dask about s center of mass? Express your answer in radians per seconds squared to three significant figures.
• Part A A thin, ight string is wrapped around the rim of a 4.10 kg sold uniform disk (similar to a puck on ice without triction) that is 295 cm in diameter. A person puls on the string with a constant force of 102.5 N tangent te the disk, as shown in the figure below (Fuure 1). The disk is not attached to anything and is tree to move and tum. Find the anguiar acceleration of the disk about its center of mass. Express your answer in radiana per seconds squared to three significant figures. rad/ Submit Reevest Ana Part B Find the inear acceleration of its center of mass. Express your answer in metera per second squared to three significant figures. igure 1 of 1 回A Pull m/ Subrit neovest Anew Part C I the dsk is replaced by a hollow thinwaled eyinder of the same mass and dameter, what will be the angular acceleration of the dask about s center of mass? Express your answer in radians per seconds squared to three significant figures.
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