2. Using the density principle... Conclusions: The average density of the metal in part A was 89. The metal was identifi

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2. Using the density principle... Conclusions: The average density of the metal in part A was 89. The metal was identifi

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2 Using The Density Principle Conclusions The Average Density Of The Metal In Part A Was 89 The Metal Was Identifi 1
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2 Using The Density Principle Conclusions The Average Density Of The Metal In Part A Was 89 The Metal Was Identifi 2
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2. Using the density principle... Conclusions: The average density of the metal in part A was 89. The metal was identified to be Copper. The average data had a percent error of %. The solution in part B had an average density of 2.727 gml. Correct
Purpose: The purpose of this lab is to determine the density of a metal cylinder and a solution different methods to determine volume. The calculated density was then used to identify the metal in the cylinder. Procedure: The procedure was followed as described in the FSCJ lab manual. Data: A. Cylinder Number/letter (if there was one) N/A Appearance of Cylinder copper Mass (g) length (cm) B ^56.43 Volume from Dimensions (mL) 6.63 B. Unknown solution letter (if there was Volume from Displacement (mL) 6 diameter (cm) mass before adding solution mass after adding solution Solution mass Solution volume (mL) Density of unknown solution с Sample Calculations: Show on an attached sheet. 1) Volume from displacement 2) Volume from dimensions 3) Density from displacement 4) Density from dimensions 5) Average density 6) % Error of Metal Density Volume Before (mL) D 1.3 density from dimensions 8.5 9.41 s one) lemon juice Trial 1 F27.319 Same as Trial 1 628.689 128.679 *28.679 1.379 1.369 1.369 H2mL 2mL L 2mL 2.74gml 2,720 2.720g/ml J Trial 2 50 density from displacement 29 Volume After (mL) E Trial 3 56 average density 8.96 Average density of unknown: 2,727gml
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