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Curiosity is a basic element of our cognition, yet its biological function, mechanisms, and neural underpinning remain poorly understood These intertwined processes enhance student engagement, deepen understanding, and foster academic success. Each of us is capable of curiosity, but what sparks and sustains it
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In this article, i describe evidence from the limited existing research showing that curiosity is important and relates to science learning, and i suggest several mechanisms through which curiosity can support science learning. This article delves into the psychological and neurological underpinnings of curiosity, exploring how it influences our behaviors and learning processes. In science, curiosity fuels innovation by inspiring new ideas and pushing the boundaries of knowledge
Scientists cultivate curiosity by maintaining an open mind, being willing to explore new ideas, and embracing uncertainty.
Pedagogical strategies that foster curiosity, including the integration of large language models and innovative teaching tools, have been shown to effectively enhance student engagement and. This paper explores curiosity’s psychological and neuroscientific basis, emphasizing its role in fostering motivation, clinical reasoning, empathy, and communication skills It also highlights curiosity’s protective effect against burnout. Curiosity and skepticism are essential elements of the scientific method, enabling scientists to observe, question, test, and refine their understanding of the natural world.
Curiosity is a fundamental aspect of human nature that drives us to explore, learn, and understand the world around us