Lurking alligators. An alligator waits for prey by floating with only the top of its head exposed, so that the prey cannot easily see it. One way it can adjust the extent of sinking is by controlling the size of its lungs. Another way may be by swallowing stones (gastrolithes) that then reside in the stomach. Figure 14-41 shows a highly simplified model (a “rhombohedron gater”) of mass 130 kg that roams with its head partially exposed. The top head surface has area 0.20 m 2 . If the alligator were to swallow stones with a total mass of 1.0% of its body mass (a typical amount), how far would it sink? Figure 14-41 Problem 40.
Lurking alligators. An alligator waits for prey by floating with only the top of its head exposed, so that the prey cannot easily see it. One way it can adjust the extent of sinking is by controlling the size of its lungs. Another way may be by swallowing stones (gastrolithes) that then reside in the stomach. Figure 14-41 shows a highly simplified model (a “rhombohedron gater”) of mass 130 kg that roams with its head partially exposed. The top head surface has area 0.20 m 2 . If the alligator were to swallow stones with a total mass of 1.0% of its body mass (a typical amount), how far would it sink? Figure 14-41 Problem 40.
Lurking alligators. An alligator waits for prey by floating with only the top of its head exposed, so that the prey cannot easily see it. One way it can adjust the extent of sinking is by controlling the size of its lungs. Another way may be by swallowing stones (gastrolithes) that then reside in the stomach. Figure 14-41 shows a highly simplified model (a “rhombohedron gater”) of mass 130 kg that roams with its head partially exposed. The top head surface has area 0.20 m2. If the alligator were to swallow stones with a total mass of 1.0% of its body mass (a typical amount), how far would it sink?
Two objects (m₁ = 4.75 kg and m₂
2.80 kg) are connected by a light string passing over a light, frictionless pulley as in the figure below. The 4.75-kg object is released from rest at a point h = 4.00 m above the table
mg
m
(a) Determine the speed of each object when the two pass each other.
m/s
(b) Determine the speed of each object at the moment the 4.75-kg object hits the table.
m/s
(c) How much higher does the 2.80-kg object travel after the 4.75-kg object hits the table?
m
A cell of negligible internal resistance is connected to three identical resistors. The
current in the cell is 3.0 A.
The resistors are now arranged in series.
What is the new current in the cell?
A negatively charged sphere is falling through a magnetic field.
north pole
of magnet
direction of motion
south pole
of magnet
What is the direction of the magnetic force acting on the sphere?
Chapter 14 Solutions
Fundamentals Of Physics 11th Edition Loose-leaf Print Companion Volume 2 With Wileyplus Card Set
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