what can you conclude from the graph?\no the reaction that causes a firework to explode requires less energy…

what can you conclude from the graph?\no the reaction that causes a firework to explode requires less energy to start, and occurs more rapidly than the reaction that causes a candle to burn.\no the reaction that causes a firework to explode requires less energy to start, and occurs less rapidly than the reaction that causes a candle to burn.\no the reaction that causes a firework to explode requires more energy to start, and occurs less rapidly than the reaction that causes a candle to burn.\no the reaction that causes a firework to explode requires more energy to start, and occurs more rapidly than the reaction that causes a candle to burn.
Answer
Brief Explanations:
The steeper the slope of the energy - time graph, the more rapid the reaction. A lower starting - point of the energy curve indicates less energy required to start the reaction. Fireworks explode more rapidly than a candle burns and likely require less energy to start the reaction (as they are designed to be easily ignited and react quickly).
Answer:
The reaction that causes a firework to explode requires less energy to start, and occurs more rapidly than the reaction that causes a candle to burn.