Data Table A. Temperature and Phase Changes Time (min) continued Time Temperature (°C) (min) 0 (initial) 1 2 1.8% 3 2.5 4.1 S 6 7 8 a 10 12 13 Measuring Energy Changes .4°C Solid Ice 1.7°C Melting Starts 4.4 5.1 Notes IS 16 8.2 18,3 Ice completely melt 28.0 416.5 65.3 82.5 90 18 19 20 21 22 23 24 Steam begins 25. 26 27 Temperature (°C) continued 95.41 97.5 वर्ष 99.2 99 100.1 99.8 Notes Startsbubbling

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Chapter10: Thermal Physics
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Make a graph using the data points provided and place what questions 2 and 3 are asking in the graph.
Name: Michae1 Zheng
Class/Lab Period:
Measuring Energy Changes
Data Table A. Temperature and Phase Changes
Time
Temperature
(°C)
Notes
Time
Temperature
(°C)
continued
Notes
(min)
(min)
continued
.4°C Solid Ice
1.7°C Melting Stards
|. ४°८
32.5
bubbling
95.1
Starts bub
(initial)
is
97.5
16
aa.2
4.1
18
99
니.니
19
100.1
20
8.2
21
8.
18,3 Ice complelely me H
22
28.6
23
10
u6.5
24
65.3
Steam begins 2s
12
26
13
90
27
Transcribed Image Text:Name: Michae1 Zheng Class/Lab Period: Measuring Energy Changes Data Table A. Temperature and Phase Changes Time Temperature (°C) Notes Time Temperature (°C) continued Notes (min) (min) continued .4°C Solid Ice 1.7°C Melting Stards |. ४°८ 32.5 bubbling 95.1 Starts bub (initial) is 97.5 16 aa.2 4.1 18 99 니.니 19 100.1 20 8.2 21 8. 18,3 Ice complelely me H 22 28.6 23 10 u6.5 24 65.3 Steam begins 2s 12 26 13 90 27
Page 5-EA
Measuring Energy Changes- Page 6
Post-Lab Calculations and Analysis (Use a separate sheet of paper to ansuwer the following questions.)
Part A. Temperature and Phase Changes
1. Using your data, draw a graph of temperature (y-axis) versus time (x-axis). q
Excel
2. Note on the graph the temperature at which all of the ice has melted and the temperature
at which the water starts to boil.
3. Are there any temperature plateaus (flat regions of the curve) on the temperature versus
time graph? Name the physical property of water corresponding to each temperature
plateau.
4. Was heat being added to the system during the times that the temperature remained rela-
tively constant? Use the law of conservation of energy to describe what happened to the
heat energy that was absorbed during this time.
5. Was heat being added to the system during the times that the temperature was rising?
Use the law of conservation of energy to describe what happened to the heat energy that
was absorbed during this time.
Part B. Energy Needed to Melt Ice
Transcribed Image Text:Page 5-EA Measuring Energy Changes- Page 6 Post-Lab Calculations and Analysis (Use a separate sheet of paper to ansuwer the following questions.) Part A. Temperature and Phase Changes 1. Using your data, draw a graph of temperature (y-axis) versus time (x-axis). q Excel 2. Note on the graph the temperature at which all of the ice has melted and the temperature at which the water starts to boil. 3. Are there any temperature plateaus (flat regions of the curve) on the temperature versus time graph? Name the physical property of water corresponding to each temperature plateau. 4. Was heat being added to the system during the times that the temperature remained rela- tively constant? Use the law of conservation of energy to describe what happened to the heat energy that was absorbed during this time. 5. Was heat being added to the system during the times that the temperature was rising? Use the law of conservation of energy to describe what happened to the heat energy that was absorbed during this time. Part B. Energy Needed to Melt Ice
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