QUESTION IMAGE
Question
- how does the change in energy of a chemical reaction predict whether or not the reaction will occur?
- explain the role of enzymes and how they affect the chemical reactions of living things.
critical thinking
- sep use models explain why a key that fits into a lock is a useful model for the function of enzymes.
- sep construct an explanation explain how consuming an acid - neutralizing antacid might affect protein digestion. apply the concept of activation energy to support your explanation.
Brief Explanations
- If the change in energy (Gibbs free - energy change, $\Delta G$) of a chemical reaction is negative, the reaction is spontaneous and likely to occur; if positive, it is non - spontaneous under the given conditions; if zero, the reaction is at equilibrium.
- Enzymes are biological catalysts. They lower the activation energy of chemical reactions in living things, increasing the rate of these reactions without being consumed in the process.
- The key - lock model is useful for enzymes because just as a specific key fits into a specific lock, each enzyme has a specific active site with a unique shape that binds to a specific substrate, similar to how a key fits into a lock.
- Protein digestion in the stomach occurs in an acidic environment. Acid - neutralizing antacids raise the pH. Enzymes involved in protein digestion, like pepsin, have an optimal pH for activity. Raising the pH increases the activation energy for protein - digestion reactions as the enzymes are less effective, thus slowing down protein digestion.
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- A negative Gibbs free - energy change ($\Delta G$) indicates a spontaneous reaction likely to occur; positive $\Delta G$ means non - spontaneous; $\Delta G = 0$ is equilibrium.
- Enzymes are biological catalysts that lower activation energy, increasing reaction rates in living things.
- Each enzyme has a specific active site (like a lock) that binds to a specific substrate (like a key).
- Antacids raise stomach pH, increasing activation energy for protein - digestion reactions as enzymes are less effective, slowing digestion.