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Do question 3 pls... I need the answer on how to do this graph properly

Water Volume and Mass 1. Position a meterstick vertically on a flat surface, such as a wall or the side of a lab bench. Be su Unit for y-variable-y-axis the metric scale of the meterstick is on the outside and secure the meterstick to the wall or lab bench with two strips of masking tape. Graph Title 200Scale for y-variable 2. Drop a ball as close as possible to the meterstick and measure (a) the height dropped, and (b) the resulting height bounced. Repeat this for five different heights dropped and record all dat in Data Table 1.1 150 In the data table, identify the independent (manipulated) variable /Data points and the dependent (responding) variable. Best fit smoot line 100 Data Table 1.1 Single Measurement Data: Ist Ball Scale for x-variable Trial 50 Height Dropped Height Bounčed x-axis y-variable end variable ame ariable 50 100 150 200 250 x-variableVolume (cm) name x-variable Figure 1.1 Use the graph paper on page 9 to make a graph of the data in Data Table L.1. bein all the rules of graphing (see appendix I on page 395 for help). Title the Measurement Bounce Height as a Function of Height Dropped. g sure to follo graph, Single

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h1 45 and Mass 70 80 35 y ads Scale for the metric scale of the meterstick is on bench with two strips of masking tape. 35 Graph Title 2. Drop a ball as close as possible to the (b) the resalting height bounced. Repeat th in Data Table 1.1 In the data h2 and the dependent 15 Linear (h2) Bost fit line Data Table 1.1 10 Single Scale for x-variable Trial x-axie Axis Title 50 100 150 200 250 meVolume (cm)Unit for x-variable 3. Use the graph paper on page 9 to make a graph of the data in Data Table 1. all the rules of graphing (see appendix I on pape 395 for help). Title the Measurement Bounce Height as a Function of Height Dropped , being sure to follo graph, Single

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