53. The combustion of glucose, CH1,O, forms carbon dioxide gas and water vapour. When a 1.00 g sample of glucose was burned, it raised the temperature 100.0 mL of water by 37.0 °C. (5.2, 5.3, 5.5) AA (a) Write a balanced chemical equation for this reaction. (b) Use AH to calculate the enthalpy change of this of reaction. (c) Use bond energies in Table 1 on page 307 to calculate the enthalpy change of this reaction. The structural formula of glucose is shown in Figure 1.
53. The combustion of glucose, CH1,O, forms carbon dioxide gas and water vapour. When a 1.00 g sample of glucose was burned, it raised the temperature 100.0 mL of water by 37.0 °C. (5.2, 5.3, 5.5) AA (a) Write a balanced chemical equation for this reaction. (b) Use AH to calculate the enthalpy change of this of reaction. (c) Use bond energies in Table 1 on page 307 to calculate the enthalpy change of this reaction. The structural formula of glucose is shown in Figure 1.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
Related questions
Question

Transcribed Image Text:Single bonds
Multiple bonds
H-H 432
N-H 391
H149
C=C 614
H-F 565
N-N 160
-CI 208
C C 839
H-CI 427
N-F 272
-Br 175
0=0 495
H-Br 363
N-CI 200
S-H 347
C=0* 745
H-1 295
N-Br 243
S-F 327
C=0 1072
C-H 413
N-0 201
S-CI 253
N=0 607
C-C 347
0-H 467
S-Br 218
N=N 418
C-N 305
0-0 146
S-S 266
N-N 941
C-0 358
0-F 190
Si-Si 340
C=N 891
C-F 485
0-CI 203
Si-H 393
C=N 615
C-CI 339
0-1 234
Si-C 360
C-Br 276
F-F 154
Si-0 452
C-1240
F-CI 253
C-S 259
F-Br 237
CI-CI 239
CI-Br 218
Br-Br 193

Transcribed Image Text:53. The combustion of glucose, CH1,O, forms carbon
dioxide gas and water vapour. When a 1.00 g sample
of glucose was burned, it raised the temperature
100.0 mL of water by 37.0 °C. (5.2, 5.3, 5.5) AA
(a) Write a balanced chemical equation for this reaction.
(b) Use AH to calculate the enthalpy change of this
of
reaction.
(c) Use bond energies in Table 1 on page 307 to
calculate the enthalpy change of this reaction.
The structural formula of glucose is shown in
Figure 1.
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