Question: Experiment 11: Simple Harmonic Motion A 30.0-cm-long spring is hanging vertically. When a 100.0-g object is attached to the bottom end of the spring, the

 Experiment 11: Simple Harmonic MotionA 30.0-cm-long spring is hanging vertically. When

Experiment 11: Simple Harmonic Motion

A 30.0-cm-long spring is hanging vertically. When a 100.0-g object is attached to the bottom end of the spring, the spring is stretched to a new length of 34.5 cm.

a 100.0-g object is attached to the bottom end of the spring,

A 30.0-cm-long spring is hanging vertically. When a 100.0-g object is attached to the bottom end of the spring, the spring is stretched to a new length of 34.5 cm. Pre-Lab 11.a Homework . Answered . Due Today, 11:59 PM What is the spring constant in N/m? Respond with the correct number of significant figures in scientific notation (Use E notation and only 1 digit before decimal e.g. 2.585 for 2.5 x 10") Type your numeric answer and submit 2.18E1 X You are incorrect Answered - Incorrect . 1 attempt left Resubmit Pre-Lab 11.b Homework . Answered . Due Today, 11:59 PM How much is the spring displaced (in cm) if a 50.0-g object is attached to the spring? Respond with the correct number of significant figures in scientific notation (Use E notation and only 1 digit before decimal e.g. 2.585 for 2.5 x 10") Type your numeric answer and submit 2.25EO X You are incorrect Answered - Incorrect . 1 attempt left Resubmit Pre-Lab 11.c Homework . Unanswered . Due Today, 11:59 PM Attach a 200.0-g object to the spring and allow the spring-object system to reach its equilibrium state. Pull down the object by 3.0 cm then release. What is the period of the oscillation in s? Respond with the correct number of significant figures in scientific notation (Use E notation and only 1 digit before decimal e.g. 2.585 for 2.5 x 10") Type your numeric answer and submit Unanswered . 2 attempts left Submit Pre-Lab 11.d Homework . Unanswered . Due Today, 11:59 PM What is the period of the oscillation if the 200.0-g object is pulled down 5.0 cm from the spring-object equilibrium level? Respond with the correct number of significant figures in scientific notation (Use E notation and only 1 digit before decimal e.g. 2.585 for 2.5 x 10") Type your numeric answer and submit

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