研究課題/領域番号 |
21K02904
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研究種目 |
基盤研究(C)
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配分区分 | 基金 |
応募区分 | 一般 |
審査区分 |
小区分09080:科学教育関連
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研究機関 | 九州大学 |
研究代表者 |
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研究期間 (年度) |
2021-04-01 – 2025-03-31
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研究課題ステータス |
交付 (2023年度)
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配分額 *注記 |
4,030千円 (直接経費: 3,100千円、間接経費: 930千円)
2023年度: 1,560千円 (直接経費: 1,200千円、間接経費: 360千円)
2022年度: 910千円 (直接経費: 700千円、間接経費: 210千円)
2021年度: 1,560千円 (直接経費: 1,200千円、間接経費: 360千円)
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キーワード | education / chemistry / communication / science / 化学 / 教育 / コミュニケーション / 科学 / edutainment / YouTube / videos / Science / Education / online / chemistrty / outreach |
研究開始時の研究の概要 |
This research will establish new methods for implementing edutainment style videos for increasing student engagement with educational materials and concept retention.
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研究実績の概要 |
I have created a YouTube channel to investigate the relationship between fun, 'edutainment' videos and academic, skills and concepts videos. In the last year, the channel has gained over 47,000 subscribers and over 4,000,000 views.
The channel has gained most of those subscribers (47,000) in the last year of original funding, resulting in a request for an extension of funding for one more year.
The original question has mostly been answered, though the original data needs to be updated with the current data for the most accurate conclusions.
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現在までの達成度 (区分) |
現在までの達成度 (区分)
1: 当初の計画以上に進展している
理由
The project involved creating a YouTube channel for chemistry education and communication and investigating whether edutainment could encourage engagement with academic skills based videos. The original target was for a number of subscribers in the hundreds, whereas now we have over 47,000 subscribers. This has resulted in a much greater data load than we were expecting.
The channel also won the 2023 科学コミュニケーション賞 from the Japan Union for Science and Technology for its contribution to chemistry communication.
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今後の研究の推進方策 |
We are planning to increase our subscriber numbers to over 100,000 this year (2024) as a key chemistry education resource and as a means of gathering important demographic information.
We are planning publications on: viewer demographics and viewer interest; methods of converting crystallographic data to Blender software for easy visualisation of complex structures, and an original history of the Avogadro number.
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