Investigating the Relationship between Climate Variables and Solar Activity: A Regression Analysis Approach

Budiman Nasution, Goldberd Harmuda Duva Sinaga, Arip Nurahman, Ruben Cornelius Siagian
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Abstract

This study employs regression analysis to investigate the relationships between carbon dioxide levels, sunspot occurrences, and global temperatures, encompassing both land and sea. By uncovering these connections, the study contributes to our understanding of climate change and solar phenomena interactions. The primary objective is to reveal the intricate associations between these elements, potentially influencing climate change and solar activity. The study's outcomes have significant implications for climate change research and solar activity monitoring. The positive correlation between carbon dioxide concentration and ocean temperatures emphasizes the impact of atmospheric carbon dioxide on sea temperature fluctuations. Conversely, the inverse correlation between sunspot numbers and land/global temperatures suggests solar activity's potential role in shaping Earth's temperature oscillations. This research introduces novelty by concurrently investigating the interconnectedness of these factors. The study establishes substantial connections between carbon dioxide concentration, sunspot numbers, and global temperatures. While the models shed light on some variability, the complexity of climate change and solar activity calls for further exploration of additional factors. This underscores the need to consider multiple variables for a comprehensive understanding. Further research is recommended to enhance the precision of these models.
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气候变量与太阳活动的关系:回归分析方法
本研究采用回归分析来调查二氧化碳水平、太阳黑子发生和全球温度之间的关系,包括陆地和海洋。通过揭示这些联系,这项研究有助于我们了解气候变化和太阳现象的相互作用。主要目标是揭示这些元素之间错综复杂的联系,潜在地影响气候变化和太阳活动。这项研究的结果对气候变化研究和太阳活动监测具有重要意义。二氧化碳浓度与海洋温度的正相关关系强调了大气二氧化碳对海洋温度波动的影响。相反,太阳黑子数量与陆地/全球温度之间的负相关表明,太阳活动在塑造地球温度振荡方面的潜在作用。本研究通过同时调查这些因素的相互联系来引入新颖性。这项研究在二氧化碳浓度、太阳黑子数量和全球温度之间建立了实质性的联系。虽然这些模式揭示了一些可变性,但气候变化和太阳活动的复杂性要求进一步探索其他因素。这强调了需要考虑多个变量以进行全面理解。建议进一步研究以提高这些模型的精度。
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发文量
10
审稿时长
24 weeks
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