1)A 0.169-kg frame, when suspended from a coil spring, stretches the spring 0.0400 m. A 0.200-kg lump of putty is dropped from rest onto the frame from a height of 30.0 cm.
A)Find the maximum distance the frame moves downward from its initial equilibrium position.
2)A wheel with a weight of 389 N comes off a moving truck and rolls without slipping along a highway. At the bottom of a hill it is rotating at an angular velocity of 27.8 rad/s . The radius of the wheel is 0.618 m and its moment of inertia about its rotation axis is 0.800 MR2. Friction does work on the wheel as it rolls up the hill to a stop, at a height of habove the bottom of the hill; this work has a magnitude of 3464 J .
A)Calculalte h.Use 9.81 m/s2 for the acceleration due to gravity.
1)A 0.169-kg frame, when suspended from a coil spring, stretches the spring 0.0400 m. A 0.200-kg...
Constants Part A A0.169-kg frame, when suspended from a coil spring, stretches the spring 0.0400 m. A 0.200-kg lump of putty is dropped from rest onto the frame from a height of 30.0 cm (Figure 1) Find the maximum distance the frame moves downward from its initial equilibrium position Express your answer with the appropriate units. d= 1 Value Units Submit Previous Answers Request Answer X Incorrect; Try Again; 2 attempts remaining
A 0.290 kg frame, when suspended from a coil spring, stretches
the spring 0.0400 mm. A 0.200 kg lump of putty is dropped from rest
onto the frame from a height of 30.0 cm.
Find the maximum distance the frame moves downward from its
initial equilibrium position?
I got d= 0.1286 m, but it's wrong.
Figure < 1 of 1 30.0 cm esc F3 #
A wheel with a weight of 396N comes off a moving truck and rolls without slipping along a highway. At the bottom of a hill it is rotating at an angular velocity of 25.4rad/s . The radius of the wheel is 0.651m and its moment of inertia about its rotation axis is 0.800 MR2. Friction does work on the wheel as it rolls up the hill to a stop, at a height of habove the bottom of the hill; this...
A wheel with a weight of 390 N comes off a moving truck and rolls without slipping along a highway. At the bottom of a hill it is rotating at an angular velocity of 24.0 rad/s . The radius of the wheel is 0.555 m and its moment of inertia about its rotation axis is 0.800 MR2. Friction does work on the wheel as it rolls up the hill to a stop, at a height of h above the bottom...
Homework Set 7 Problem 9 Problem9 Part A A 0.150-kg frame, when suspended from a coil spring stretches the spring 0.070 m A 0.200-kg lump of putty is dropped from rest onto the frame from a height of 30.0 cm (Figure 1) Find the maximum distance the frame moves downward from its initial position. d 0.11 In Submit My Answers Give Up Incorrect; Try Again; 4 attempts remaining; no points deducted Feedback ue
A thin hoop (I = MR2) of mass 0.33 kg and radius 0.088 m rolls, without slipping, down an incline of height 0.75 m. At the bottom of the hill, what percentage of its total kinetic energy is rotational kinetic energy?
While driving down a flat highway at a speed of 29.0 m/s the wheel of a truck detaches from its axle and rolls towards a hill. The 45.0 kg wheel rolls without slipping up a hill where it stops at a location 80.0 m higher than the bottom of the hill. What is the wheel's moment of inertia in kgm I if its radius is 0.45 m? (Do not assume the wheel has a mass distribution that is on the...
While driving down a flat highway at a speed of 29.0 m/s the wheel of a truck detaches from its axle and rolls towards a hill. The 45.0 kg wheel rolls without slipping up a hill where it stops at a location 80.0 m higher than the bottom of the hill. What is the wheel's moment of inertia in kgm I if its radius is 0.45 m? (Do not assume the wheel has a mass distribution that is on the...
A spring stretches by 0.0209 m when a 3.75-kg object is suspended from its end. How much mass should be attached to this spring so that its frequency of vibration is f = 7.72 Hz?
A
soring stretches by 0.0165 m when a 4.73 kg object is suspended
from its end. How much mass should be attached to this spring so
that its frequency of vibration is f=4.25 Hz?
Interactive Learning Ware 10.1 reviews the concepts involved in this problem. A spring stretches by 0.0165 m when a 4.73-kg object is suspended from its end. How much mass should be attached to this spring so that its frequency of vibration is f 4.25 Hz? Number...