Compute the x and y coordinates of the center of mass of the piece.
													
																	A uniform piece of sheet steel is shaped as in. 
									
	
		
	
																	Based on our data we think this question is relevant for professor velissaris class at ucf. 
																	Compute the x and y coordinates of the center of mass of the piece. 
																	Compute the x and y coordinates of the center of mass of the piece. 
																	Compute the x and y coordinates of the center of mass of the piece. 
															
													
									
	
		
	
																	A uniform piece of sheet metal is shaped as shown in the figure below. 
																	3 a uniform piece of sheet steel is shaped as in figure. 
																	M 1 1 80 kg is at r 1 1 00 i 2 00j m and has velocity 3 00i 0 500j m s. 
																	A uniform piece of sheet metal is shaped as shown in the figure. 
															
													
									
	
		
	
																	M 2 4 00 kg is at r 2 4 00i 3 00j m and has velocity 3 00i 2. 
																	The x and y coordinate of the centre of mass of the piece. 
																	Compute the x and y coordinates of the center of mass of the piece 20 10 49. 
																	48 a uniform piece of sheet metal is shaped as shown in cm 30 figure p9 48. 
															
													
									
	
		
	
																	Both axes are marked in increments of 2. 
																	A uniform piece of sheet metal is shaped as shown in figure p9 24. 
																	X y a consider a system of two particles in the xy plane. 
																	Both axes are marked in increments of 14. 
															
													
									
	
		
	
																	A rod of length 30 0 cm has x cm linear density mass per length given by 10 20 30 figure p9 48 50 0 20 0x. 
																	A uniform piece of sheet steel is shaped as in the figure below.