Biology: The Dynamic Science (MindTap Course List)
4th Edition
ISBN: 9781305389892
Author: Peter J. Russell, Paul E. Hertz, Beverly McMillan
Publisher: Cengage Learning
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Chapter 6.1, Problem 2SB
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Living organisms increase in complexity as they grow, resulting in a decrease in the entropy of an organism. How does this relate to the second law of thermodynamics?
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Which of the following defines the first law of thermodynamics?
A. Energy cannot be created or destroyed
B. The capacity to do work
C. The energy stored in the arrangement of objects in a system
D. Energy tends to disperse spontaneously
Chapter 6 Solutions
Biology: The Dynamic Science (MindTap Course List)
Ch. 6.1 - Prob. 1SBCh. 6.1 - In thermodynamics, what is meant by an isolated...Ch. 6.2 - Prob. 1SBCh. 6.2 - Prob. 2SBCh. 6.2 - Distinguish between exergonic and endergonic...Ch. 6.3 - Prob. 1SBCh. 6.3 - How are coupled reactions important to cell...Ch. 6.4 - How do enzymes increase the rates of the reaction...Ch. 6.4 - Can enzymes alter the G of a reaction?Ch. 6.5 - Prob. 1SB
Ch. 6.5 - What is the difference between competitive and...Ch. 6.5 - Prob. 3SBCh. 6.6 - Prob. 1SBCh. 6 - The capacity to do work best defines: a metabolic...Ch. 6 - The assembly of proteins from amino acids is best...Ch. 6 - When two glucose molecules react to form maltose:...Ch. 6 - When glucose reacts with ATP to form...Ch. 6 - In the following graph: A represents the product....Ch. 6 - Which of the following methods is not used by...Ch. 6 - In an enzymatic reaction: a. the enzyme leaves the...Ch. 6 - Which of the following statements about the...Ch. 6 - Which of the following statements about inhibition...Ch. 6 - Which of the following statements is incorrect? a....Ch. 6 - Prob. 11TYKCh. 6 - Discuss Concepts Trace the flow of energy through...Ch. 6 - Prob. 13TYKCh. 6 - Prob. 14TYKCh. 6 - Prob. 15TYKCh. 6 - Prob. 16TYKCh. 6 - Prob. 17TYKCh. 6 - Prob. 1ITDCh. 6 - Prob. 2ITDCh. 6 - Prob. 3ITD
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- Explain first and second law of thermodynamics using an examplearrow_forwardWhy is it not enough to just rely on either thermodynamic data alone ... Or kinetic (rate of reaction) data alone to predict the possible occurrence of a chemical reaction?arrow_forwardBased on the laws of thermodynamics, energy is never created. Where does a cell get the energy to create ATP?arrow_forward
- Which of the following is TRUE regarding the second law of thermodynamics? The quality of the energy in the universe increases over time. The entropy of the universe is always increasing. Energy is conserved in the universe. The energy of the universe is always increasing. Entropy is conserved in the universe.arrow_forwardDefine the following terms: a. thermodynamics b. bioenergetics c. entropy d. enthalpy e. free energyarrow_forwardLiving systems may appear to violate the second law of thermodynamics because living thingsmaintain a high degree of organization despite a universal trend toward increasingdisorganization. What is the explanation for this apparent paradox?arrow_forward
- Why is the entropy of a system dependent on temperature?arrow_forwardWhile walking to biochemistry class with a friend, you see the following graffiti spray painted on the wall of the science building: “When a system is in equilibrium, the Gibbs free energy is maximum.” You are disgusted, not only at the vandalism, but at the ignorance of the vandal. Your friend asks you to explain.arrow_forwardWhich of the following is/are true concerning the first law of thermodynamics? A) Energy cannot be created or destroyed. B) The total amount of energy in the universe is constant. C) Energy can be converted from one form to another. D) It is sometimes referred to as the law of conservation of energy. E) All of the above are true.arrow_forward
- What is the most common form of kinetic energy that is released from chemical energy in chemical reactions?arrow_forwardHow it is that cells are making larger, more complex molecules, yet they do not defy the second law of thermodynamics? (note: cells are open systems not closed)arrow_forwardBeginning physics students are often taught the basicconcepts of thermodynamics with two phrases: First,you can never win. Second, you can never break even.Explainarrow_forward
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