ASK YOUR TEACHER PRACTICE ANO A light spring of force constant k = 150 N/m rests vertically on the bottom of a large beaker of water (Figure a). A 4.58-kg block of wood (density = 650 kg/m³) is connected to the spring, and t block-spring system is allowed to come to static equilibrium (Figure b). What is the elongation AL of the spring? cm T AL 171
ASK YOUR TEACHER PRACTICE ANO A light spring of force constant k = 150 N/m rests vertically on the bottom of a large beaker of water (Figure a). A 4.58-kg block of wood (density = 650 kg/m³) is connected to the spring, and t block-spring system is allowed to come to static equilibrium (Figure b). What is the elongation AL of the spring? cm T AL 171
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PRACTICE ANO
A light spring of force constant k = 150 N/m rests vertically on the bottom of a large beaker of water (Figure a). A 4.58-kg block of wood (density = 650 kg/m³) is connected to the spring, and t
block-spring system is allowed to come to static equilibrium (Figure b). What is the elongation AL of the spring?
cm
T
AL
171"
Transcribed Image Text:ASK YOUR TEACHER
PRACTICE ANO
A light spring of force constant k = 150 N/m rests vertically on the bottom of a large beaker of water (Figure a). A 4.58-kg block of wood (density = 650 kg/m³) is connected to the spring, and t
block-spring system is allowed to come to static equilibrium (Figure b). What is the elongation AL of the spring?
cm
T
AL
171
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