Type of Nut Almond Pecan Walnut Brazil Nut Hazel Nut Peanut Cashew Marshmallow Mass of Nut Vwater (mL) 0.85g 55mL 0.729 0.80g 55mL 0.939 55mL 0.919 55g 55g 55g 55g 55mL 55g 55 mL 0.369 56 mL 1.54g 55mL 1349 6.179 LAB: ENERGY FROM BURNING NUTS Assume that the density of the water is 1.0 g/mL 56 mL mwater 56g 55g 56g T₁ (°C) 26°C 53°C Tr (°C) 19°C 19°C 22°C 45°C 25°C 58°C 23°C 39°C 20°C 25°C 30% 23.5°C 83.5°C 36°C AT (°C) Energy Absorbed (q) Heat per gram of nut (J/g)
Type of Nut Almond Pecan Walnut Brazil Nut Hazel Nut Peanut Cashew Marshmallow Mass of Nut Vwater (mL) 0.85g 55mL 0.729 0.80g 55mL 0.939 55mL 0.919 55g 55g 55g 55g 55mL 55g 55 mL 0.369 56 mL 1.54g 55mL 1349 6.179 LAB: ENERGY FROM BURNING NUTS Assume that the density of the water is 1.0 g/mL 56 mL mwater 56g 55g 56g T₁ (°C) 26°C 53°C Tr (°C) 19°C 19°C 22°C 45°C 25°C 58°C 23°C 39°C 20°C 25°C 30% 23.5°C 83.5°C 36°C AT (°C) Energy Absorbed (q) Heat per gram of nut (J/g)
ChapterU5: Fire: Energy , Thermodynamics, And Oxidation-reduction
Section: Chapter Questions
Problem 6STP
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Please show your work
Please help me with this using the data given from the chart. Please calculate the Delta T (in degrees Celsius), Energy Absorbed (q) and heat per gram of nut (J/g)
Formula: q = m c delta T
![Type of Nut
Almond
Pecan
Walnut
Brazil Nut
Hazel Nut
Peanut
Cashew
Marshmallow
Mass of
Nut
Vwater
(mL)
0.85g 55mL
0.729
0.80g 55mL
0.939
0.919 55mL
55 mL
55mL
0.36g 56 mL
1.54g 55mL
6.179 56 mL
LAB: ENERGY FROM BURNING NUTS
Assume that the density of the water is 1.0 g/mL
mwater
55g
55g
55g
55g
55g
56g
55g
56g
T₁
(°C)
26°C 53°C
19°C 19°C
22°C 45°C
25°C
Tr
(°C)
20°C
23°C 39°C
58°C
25°C
30%
23.5°C 83.5°C
36°C
ΔΤ
(°C)
Energy
Absorbed
(q)
Heat per
gram of
nut
(J/g)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3a5b5f97-25e7-4a1d-83f2-b79c7275db08%2Fe93120f9-2c0b-49d3-8d62-a8f9322ad14c%2Fgmr5qcc_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Type of Nut
Almond
Pecan
Walnut
Brazil Nut
Hazel Nut
Peanut
Cashew
Marshmallow
Mass of
Nut
Vwater
(mL)
0.85g 55mL
0.729
0.80g 55mL
0.939
0.919 55mL
55 mL
55mL
0.36g 56 mL
1.54g 55mL
6.179 56 mL
LAB: ENERGY FROM BURNING NUTS
Assume that the density of the water is 1.0 g/mL
mwater
55g
55g
55g
55g
55g
56g
55g
56g
T₁
(°C)
26°C 53°C
19°C 19°C
22°C 45°C
25°C
Tr
(°C)
20°C
23°C 39°C
58°C
25°C
30%
23.5°C 83.5°C
36°C
ΔΤ
(°C)
Energy
Absorbed
(q)
Heat per
gram of
nut
(J/g)
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