3:04 7 This question is a long free-response question. Show your work for each part of the question. Cylindrical Object Incline Figure 1 A cylindrical object can roll down an incline, as shown in...


3:04 7<br>This question is a long free-response question. Show your<br>work for each part of the question.<br>Cylindrical<br>Object<br>Incline<br>Figure 1<br>A cylindrical object can roll down an incline, as shown in<br>Figure 1. The incline is slightly less than one meter in length.<br>A group of students wants to determine the acceleration of<br>the object while it is rolling down the incline. The students<br>have access to the following equipment.<br>· A stopwatch, which can measure time intervals up to 999 s<br>with a precision of 0.01 s<br>· A clock, which can measure time intervals up to 12 hours<br>with a precision of 1 min ute (60 s)<br>• A meterstick, which can measure lengths up to 1 m with a<br>precision of 1 mm<br>· A pair of calipers, which can measure lengths up to 10 cm<br>with a precision of 0.05 mm<br>(a) Assume the object moves with a constant acceleration as<br>it rolls down the incline. Write an equation that includes<br>acceleration and quantities that can be measured or obtained<br>from measurements by using the available equipment in the<br>list.<br>Ω<br>!!<br>

Extracted text: 3:04 7 This question is a long free-response question. Show your work for each part of the question. Cylindrical Object Incline Figure 1 A cylindrical object can roll down an incline, as shown in Figure 1. The incline is slightly less than one meter in length. A group of students wants to determine the acceleration of the object while it is rolling down the incline. The students have access to the following equipment. · A stopwatch, which can measure time intervals up to 999 s with a precision of 0.01 s · A clock, which can measure time intervals up to 12 hours with a precision of 1 min ute (60 s) • A meterstick, which can measure lengths up to 1 m with a precision of 1 mm · A pair of calipers, which can measure lengths up to 10 cm with a precision of 0.05 mm (a) Assume the object moves with a constant acceleration as it rolls down the incline. Write an equation that includes acceleration and quantities that can be measured or obtained from measurements by using the available equipment in the list. Ω !!
(a) Assume the object moves with a constant acceleration as<br>it rolls down the incline. Write an equation that includes<br>acceleration and quantities that can be measured or obtained<br>from measurements by using the available equipment in the<br>list.<br>x2<br>X, 5<br>0/10000 Word Limit<br>(b) Design an experimental procedure the students could use<br>to measure the quantities required to determine the<br>acceleration of the object.<br>In the table below, list the quantities and associated symbols<br>that would be measured in your experiment and the<br>equipment used to measure them. Also list the equipment<br>that would be used to measure each quantity. You do not<br>need to fill in every row. If you need additional rows, you may<br>add them to the space just below the table.<br>Symbol<br>for<br>Quantity<br>Equipment<br>to be<br>for<br>Measured<br>Quantity<br>Measurement<br>Submit<br>!!!<br>

Extracted text: (a) Assume the object moves with a constant acceleration as it rolls down the incline. Write an equation that includes acceleration and quantities that can be measured or obtained from measurements by using the available equipment in the list. x2 X, 5 0/10000 Word Limit (b) Design an experimental procedure the students could use to measure the quantities required to determine the acceleration of the object. In the table below, list the quantities and associated symbols that would be measured in your experiment and the equipment used to measure them. Also list the equipment that would be used to measure each quantity. You do not need to fill in every row. If you need additional rows, you may add them to the space just below the table. Symbol for Quantity Equipment to be for Measured Quantity Measurement Submit !!!
Jun 11, 2022
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