The three 'point' masses are as shown in the figure. m, - 2.0 kg at (x, y) =(0,0), m₂ = 3.0 kg at (4,3), and m3 = 4.0 kg at (8,0), respectively. What is the moment of inertia of the masses about the y axis? +y=3 m x=4 m
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- Four 100 g masses are mounted on a much lighter (assume massless) ring. The ring has a radius of 0.1 m. If the ring is to spin around an axis perpendicular to the plane of the ring and passing through its center, what is the moment of inertia? 0.004 kg m^2 0.04 kg m^2 0.001 kg m^2 0.01 kg m^2 0.002 kg m^2Three point objects with masses ?1=2.6 kg, ?2=4.0 kg,and ?3=0.90 kg are arranged in the configuration shown in the figure. The distance to mass ?1 is ?1=25 cm and the distance to mass ?3 is ?3=41 cm. The distances are measured from the axis ?. What is the combined moment of inertia ? for the three point objects about the axis ? ?A 3.00-kg mass is placed at (2.00, 3.00) m, and a 4.50-kg mass is placed at (2.00, -3.00) m. What is the moment of inertia of this system of masses about the x-axis? (Take the rotational axis to be on the x-axis) 15 kg m² O 67.5 kg*m² O 30 kg*m² O 0kg*m² O97.5 kg*m²
- Two blocks, on the frictionless incline as shown in the figure below, are connected by a string of negligible mass passing over a pulley of mass M, radius R and moment of inertia I= MR. What is the magnitude of the acceleration (in m/s) of the blocks if my = 5 kg ,m2 = 8 kg , M = 4 kg and e = 30? %3D T2 m1 m2 Lotfen birini seçin: a. 3.72 b. 3.37 c. 3.59 d. 4.00 e. 4.15A 5.0 kgkg, 68-cmcm-diameter cylinder in (Figure 1) rotates on an axle passing through one edge. The axle is parallel to the floor. The cylinder is held with the center of mass at the same height as the axle, then released. What is the magnitude of the cylinder's angular velocity when it is directly below the axle?In the figure below, what is the moment of inertia of the system about the y-axis if m = 2.0 kg and a = 1.0 m? Assume that the connecting sticks are massless. * a a a a 4.0 kg-m^2. 4.8 kg-m^2. 9.6 kg-m^2. 10.3 kg-m^2. 12.0 kg-m^2.
- Four objects are held in position at the corners of a rectangle by light rods as shown in the figure below. (The mass values are given in the table.) m, (kg) m, (kg) m₂ (kg) m (kg) 3.50 2.50 M3 3.50 4 1.90 m₁ y m2 6.00 m x 0 m m3 4.00 m i (a) Find the moment of inertia of the system about the x-axis. kg.m² (b) Find the moment of inertia of the system about the y-axis. kg.m² (c) Find the moment of inertia of the system about an axis through O and perpendicular to the page. kg.m²What is the solution of this problem?A merry-go-round has a radius of 16.5 m and a moment of inertia of 310 kg-m². A boy of mass 44.9 kg runs tangent to the rim at a speed of 4 m/s and jumps on. If the merry-go-round is initially at rest, what is the angular velocity after the boy jumps on? Help on how to format answers: units w/