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  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065568646067965</loc>
    <lastmod>2026-06-14T08:17:16+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-14T08:17:16+09:00</news:publication_date>
      <news:title><![CDATA[오늘의 명화  “Svolvær, Norway,” 1918]]></news:title>
      <news:keywords><![CDATA[군나르_비드포르스, 노르웨이스볼베르]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260614/p1065568646067965_827_h.jpg</image:loc>
      <image:caption><![CDATA[Gunnar Widforss (1879, Sweden–1934, United States) In 1918, Gunnar Widforss made a trip to northern Sweden and Norway. He visited, Hålland, Undersåker, Storlien, Trondheim, Reine, Svolvaer, and Abisko National Park. This is the small harbor at Svolvær in Lofoten.
“Svolvær, Norway,” 1918, Watercolor on paper, 16 7/8 x 23 1/8 in. (42.7 x 58.7 cm). GWCR 1121. https://www.gunnarwidforss.org/catalogue/entry.php?id=1121]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065540468476922</loc>
    <lastmod>2026-06-14T00:27:51+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-14T00:27:51+09:00</news:publication_date>
      <news:title><![CDATA[호박벌은 사전 훈련 없이도 도구를 사용한다. 곤충 최초 사례]]></news:title>
      <news:keywords><![CDATA[호박벌의인지능력, 호박벌도도구사용]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260614/p1065540468476922_942_h.png</image:loc>
      <image:caption><![CDATA[이 호박벌은 하얀 스티로폼 공을 이용해 파란색 인조 꽃에 닿을 수 있다는 것을 알아냈다. © Mikko Törmänen]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065539004897482</loc>
    <lastmod>2026-06-14T00:03:58+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-14T00:03:58+09:00</news:publication_date>
      <news:title><![CDATA[기생충을 이용한 신약 개발]]></news:title>
      <news:keywords><![CDATA[기생충을이용한신약개발, 염증성장질환, 식품알레르기]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260614/p1065539004897482_398_h.png</image:loc>
      <image:caption><![CDATA[연구진은 이와 같은 갈고리충을 유전적으로 변형시켜 체내에서 약물을 생산하고 분배할 수 있도록 만들었다. © Makedonka Mitreva]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065619623491505</loc>
    <lastmod>2026-06-13T22:27:15+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-13T22:27:15+09:00</news:publication_date>
      <news:title><![CDATA[심해의 선물: 새로운 요각류과 발견]]></news:title>
      <news:keywords><![CDATA[새로운요각류발견, 심해의선물, 탈라소도리대과(Thalassodoridae), 몬스트릴로이다목(Monstrilloida)]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260613/p1065619623491505_239_h.png</image:loc>
      <image:caption><![CDATA[얕은 바다와는 달리 심해는 아직 대부분 탐사되지 않은 상태다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065576452844199</loc>
    <lastmod>2026-06-13T10:27:10+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-13T10:27:10+09:00</news:publication_date>
      <news:title><![CDATA[청소년 소셜 미디어 금지? 올바른 대안은]]></news:title>
      <news:keywords><![CDATA[소셜미디어청소년제한정책, 소셜미디어청소년활용연령제한, 호주, 디지털멘토, 독일윤리위원회]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260613/p1065576452844199_273_h.png</image:loc>
      <image:caption><![CDATA[좋아요, 공유, 끝없는 피드는 젊은이들이 소셜 미디어를 과도하게 사용하고 중독 행동을 보이게 만드는 원인이 될 수 있다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065609925183527</loc>
    <lastmod>2026-06-12T19:45:00+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-12T19:45:00+09:00</news:publication_date>
      <news:title><![CDATA[가공식품은 체중 감량을 더 어렵게 만든다]]></news:title>
      <news:keywords><![CDATA[가공식품섭취체중감량에적]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260612/p1065609925183527_643_h.png</image:loc>
      <image:caption><![CDATA[가공식품은 체중 감량을 더 어렵게 만든다]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065603759516603</loc>
    <lastmod>2026-06-12T18:02:37+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-12T18:02:37+09:00</news:publication_date>
      <news:title><![CDATA[지하 균근 네트워크는 수조 킬로미터에 달한다.]]></news:title>
      <news:keywords><![CDATA[균근균, 균근네트워크, Wood_Wide_Web, 우드와이드웹, 지하네트워크]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260612/p1065603759516603_119_h.png</image:loc>
      <image:caption><![CDATA[이 지도는 지역별 지하 균근균 네트워크의 밀도를 보여준다. © Truth & Beauty / Moritz Stefaner, Justin Stewart/ SPUN]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065600407048126</loc>
    <lastmod>2026-06-12T17:06:56+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-12T17:06:56+09:00</news:publication_date>
      <news:title><![CDATA[100년마다 발생하던 폭풍 해일이 이제는 8년마다 발생한다.]]></news:title>
      <news:keywords><![CDATA[해수면상승, 폭풍해일, 해안보호, 기후변화]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260612/p1065600407048126_831_h.png</image:loc>
      <image:caption><![CDATA[극심한 폭풍 해일은 과거보다 오늘날 훨씬 더 자주 발생한다. pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065574613616417</loc>
    <lastmod>2026-06-12T09:56:01+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-12T09:56:01+09:00</news:publication_date>
      <news:title><![CDATA[부모의 유전자가 우리를 형성하는 방식]]></news:title>
      <news:keywords><![CDATA[DNA, 부모기원효과]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260612/p1065574613616417_156_h.png</image:loc>
      <image:caption><![CDATA[부모의 유전적 구성은 우리를 양육하는 방식에 영향을 미친다. 따라서 우리가 직접 물려받지 않은 유전자조차도 우리 삶에 영향을 미친다. pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065566195154610</loc>
    <lastmod>2026-06-12T07:36:30+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-12T07:36:30+09:00</news:publication_date>
      <news:title><![CDATA[파리지옥은 어떻게 잎을 닫을까요?]]></news:title>
      <news:keywords><![CDATA[파리지옥]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260612/p1065566195154610_758_h.png</image:loc>
      <image:caption><![CDATA[파리지옥의 잎이 닫히는 동작은 식물계에서 가장 빠른 움직임 중 하나다. © Jeanne Bourdier, Corentin Mollier]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065620743124086</loc>
    <lastmod>2026-06-11T22:45:13+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-11T22:45:13+09:00</news:publication_date>
      <news:title><![CDATA[나무늘보는 왜 그렇게 느린가]]></news:title>
      <news:keywords><![CDATA[나무늘보, 근육위축증, 세포주]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260611/p1065620743124086_948_h.png</image:loc>
      <image:caption><![CDATA[두발가락나무늘보는 귀중한 에너지를 낭비하지 않는다. 신진대사가 매우 느리고 움직임 또한 느리다. © 베를린 동물원]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065571664886300</loc>
    <lastmod>2026-06-11T09:07:10+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-11T09:07:10+09:00</news:publication_date>
      <news:title><![CDATA[칠레 해발 5,600미터 산에 설치된 새로운 망원경, 우주 관측의 창 열어]]></news:title>
      <news:keywords><![CDATA[서브밀리미터파장영역, 칠레_아타카마_천문공원, FYST]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260611/p1065571664886300_383_h.png</image:loc>
      <image:caption><![CDATA[칠레 해발 5,600미터 산에 설치된 새로운 망원경, 우주 관측의 창 열어]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065570939401771</loc>
    <lastmod>2026-06-11T08:55:02+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-11T08:55:02+09:00</news:publication_date>
      <news:title><![CDATA[도시의 맥박(Urban Pulse)]]></news:title>
      <news:keywords><![CDATA[도시맥박]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260611/p1065570939401771_180_h.png</image:loc>
      <image:caption><![CDATA[연구진은 두바이의 여러 지역에 대한 월별 위성 건설 활동 데이터를 분석하여 "도시 맥박(Urban Pulse)"을 도출했다. (사진 참조) © Zhe Zhu/GERS Lab]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065539603332889</loc>
    <lastmod>2026-06-11T00:13:10+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-11T00:13:10+09:00</news:publication_date>
      <news:title><![CDATA[곤충 사육 농장은 얼마나 환경친화적일까]]></news:title>
      <news:keywords><![CDATA[곤충식, 곤충생산, 곤충농장, 밀웜, Mealworm]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260611/p1065539603332889_876_h.png</image:loc>
      <image:caption><![CDATA[밀웜(Mealworm)을 비롯한 곤충은 포유류나 가금류의 고기보다 환경 친화적인 대안으로 여겨진다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065605821554102</loc>
    <lastmod>2026-06-10T18:37:26+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-10T18:37:26+09:00</news:publication_date>
      <news:title><![CDATA[인스타그램 인플루언서 마케팅의 올바른 전략]]></news:title>
      <news:keywords><![CDATA[인스타그램마케팅효과]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260610/p1065605821554102_150_h.png</image:loc>
      <image:caption><![CDATA[인스타그램 인플루언서 마케팅의 올바른 전략]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065599444798912</loc>
    <lastmod>2026-06-10T16:50:31+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-10T16:50:31+09:00</news:publication_date>
      <news:title><![CDATA[우리 은하의 블랙홀도 항성풍을 발생시킨다.]]></news:title>
      <news:keywords><![CDATA[블랙홀항성풍, 궁수자리A*]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260610/p1065599444798912_456_h.png</image:loc>
      <image:caption><![CDATA[이 합성 이미지는 우리 은하 중심 블랙홀 주변의 가스 분포를 보여준다. 주황색 ​​영역은 전파로 감지할 수 있는 차가운 가스를 나타내고, 파란색 영역은 X선 영역에서 복사선을 방출하는 뜨거운 가스를 나타낸다. © X선: NASA/CXC/Northwestern Univ./M. Gorski; 전파: ESO/NAOJ/NRAO/ALMA; 이미지 처리: NASA/CXC/SAO/K. Arcand 및 P. Edmonds]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065573907809435</loc>
    <lastmod>2026-06-10T09:45:40+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-10T09:45:40+09:00</news:publication_date>
      <news:title><![CDATA[화석화된 땅다람쥐 배설물, 고대 생태계 분포 및 진화에 대한 정보]]></news:title>
      <news:keywords><![CDATA[선사시대다람쥐배설물]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260610/p1065573907809435_109_h.png</image:loc>
      <image:caption><![CDATA[이 사진은 중기 플라이스토세 당시 유콘 준주의 풍경이 어떠했을지 보여주는 예시다. 북극땅다람쥐의 배설물에 담긴 고대 DNA는 당시의 동식물에 대한 정보를 제공한다. © Mercedes Minck/Hakai Institute]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065619375013818</loc>
    <lastmod>2026-06-09T22:22:10+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-09T22:22:10+09:00</news:publication_date>
      <news:title><![CDATA[운석이 사라진 원시 행성에 관한 단서를 제공한다.]]></news:title>
      <news:keywords><![CDATA[앙그리아트운석, 행성형성기원, 앙그리아트모체가설]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260609/p1065619375013818_799_h.png</image:loc>
      <image:caption><![CDATA[지구가 형성되기 이전에도 태양계 안쪽에는 더 큰 원시 행성이 존재했을 가능성이 있으며, 이것이 희귀한 앙그리트 운석의 기원이 된 천체일 수 있다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065586794085863</loc>
    <lastmod>2026-06-09T13:19:53+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-09T13:19:53+09:00</news:publication_date>
      <news:title><![CDATA[전자기파 공해가 박쥐의 방향 감각을 교란시킨다.]]></news:title>
      <news:keywords><![CDATA[전자기파공해, 박쥐교란, 철생연구]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260609/p1065586794085863_778_h.png</image:loc>
      <image:caption><![CDATA[일반피피스트렐박쥐(Pipistrellus pygmaeus)는 중앙 유럽에서 가장 작은 박쥐 종이다. 여름 서식지와 겨울 서식지 사이를 이동하는 동안 지구 자기장을 비롯한 여러 가지 방법을 이용하여 방향을 잡는다. © Christian Giese]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065622448717485</loc>
    <lastmod>2026-06-06T23:14:06+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-06T23:14:06+09:00</news:publication_date>
      <news:title><![CDATA[일부 태양 플레어가 실패하는 이유]]></news:title>
      <news:keywords><![CDATA[솔라오비터, 히노데탐사선]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260606/p1065622448717485_822_h.png</image:loc>
      <image:caption><![CDATA[NASA의 태양역학관측소(SDO)에서 촬영한 이 이미지는 2012년 8월 31일 태양에서 발생한 전형적인 플라스마 폭발 현상을 보여준다. © NASA/GSFC/SDO]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065619000981022</loc>
    <lastmod>2026-06-06T22:16:36+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-06T22:16:36+09:00</news:publication_date>
      <news:title><![CDATA[매력적인 함정, 가짜 쇼핑몰에 속지 않으려면]]></news:title>
      <news:keywords><![CDATA[가짜쇼핑몰에쉽게속는이유, 디지털역량]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260606/p1065619000981022_448_h.png</image:loc>
      <image:caption><![CDATA[이 온라인 쇼핑몰은 전통적이고 지역적이며 신뢰할 수 있어 보이지만, 사기성 가짜 상점이다. © DHBW KA/ RM, DALL-E]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065578534479006</loc>
    <lastmod>2026-06-05T11:02:42+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-05T11:02:42+09:00</news:publication_date>
      <news:title><![CDATA[토마토에 인쇄된 생분해성 자기장 센서]]></news:title>
      <news:keywords><![CDATA[생분해성물질로만들어진센서, 토마토센서]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260605/p1065578534479006_759_h.png</image:loc>
      <image:caption><![CDATA[토마토에 인쇄된 생분해성 자기장 센서 – 지속 가능한 바이오 전자공학의 한 예. © Lin Guo]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065604509029273</loc>
    <lastmod>2026-06-04T18:15:07+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-04T18:15:07+09:00</news:publication_date>
      <news:title><![CDATA[틱톡 정보에 주의: 집중력 부족을 ADHD와 동일시 하는 경우 많아"]]></news:title>
      <news:keywords><![CDATA[틱톡부정확한정보, ADHD테스트]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260604/p1065604509029273_640_h.png</image:loc>
      <image:caption><![CDATA[ADHD, 자폐증, 우울증에 관한 영상들이 틱톡에서 인기를 끌고 있다. 하지만 이러한 영상들은 얼마나 정확할까? pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065590600557551</loc>
    <lastmod>2026-06-04T14:23:43+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-04T14:23:43+09:00</news:publication_date>
      <news:title><![CDATA[전 세계 전력 공급원 별 현황 (2026년 기준)]]></news:title>
      <news:keywords><![CDATA[전세계, 전력공급원별현황]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260604/p1065590600557551_822_h.png</image:loc>
      <image:caption><![CDATA[전 세계 전력 공급원별 현황. 2025년 전 세계 전력 생산량은 연료 및 기술별로 분류되어 있으며, 저탄소 에너지원의 성장과 더불어 화석 연료의 지속적인 역할을 보여준다. 이러한 구성은 AI가 사용하는 소량의 전력조차도 상당한 탄소, 물, 토지 발자국을 남기는 이유를 이해하는 데 도움이 된다. 데이터는 Ember, 2026년 자료 기준. © UNU-INWEH]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065584180538549</loc>
    <lastmod>2026-06-04T12:36:07+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-04T12:36:07+09:00</news:publication_date>
      <news:title><![CDATA[AI의 에너지 사용과 환경비용 : 탄소, 물, 토지 발자국]]></news:title>
      <news:keywords><![CDATA[인공지능의환경발자국, 딥시크, AI물발자국, MoE, 아키텍처]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260604/p1065584180538549_226_h.png</image:loc>
      <image:caption><![CDATA[OpenAI의 ChatGPT/DALL·E를 사용하여 2026년 5월에 생성된 AI의 환경 발자국 개념 이미지. 표준 해상도 AI 이미지당 추정 발자국: 문헌 기준 및 전 세계 평균 전력 발자국 계수를 기반으로 2.9 Wh의 전력, 1.22 g의 CO₂e, 28.6 mL의 물, 0.45 cm²의 토지에 해당. © UNU-INWEH]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065597440493855</loc>
    <lastmod>2026-06-03T16:17:16+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-03T16:17:16+09:00</news:publication_date>
      <news:title><![CDATA[성간 혜성에서 메탄 최초 발견]]></news:title>
      <news:keywords><![CDATA[성간, 혜성, 메탄, 최초, 발견]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260603/p1065597440493855_604_h.png</image:loc>
      <image:caption><![CDATA[제임스 웹 우주망원경으로 적외선 스펙트럼 영역에서 촬영한 성간 혜성 3I/ATLAS의 모습. © NASA/ESA/CSA, STScI, M. Belyakov (Caltech), I. Wong (STScI)]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065583235956642</loc>
    <lastmod>2026-06-03T12:20:39+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-03T12:20:39+09:00</news:publication_date>
      <news:title><![CDATA[자연의 보편적인 리듬]]></news:title>
      <news:keywords><![CDATA[자연의보편적인리듬]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260603/p1065583235956642_459_h.png</image:loc>
      <image:caption><![CDATA[자연의 리듬을 발견하게 된 계기는 반딧불이를 관찰한 데서 비롯되었다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065615971366247</loc>
    <lastmod>2026-06-02T21:26:37+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-02T21:26:37+09:00</news:publication_date>
      <news:title><![CDATA[오늘의 명화 "Spring on the Hampshire Downs"]]></news:title>
      <news:keywords><![CDATA[오늘의명화]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260602/p1065615971366247_953_h.jpg</image:loc>
      <image:caption><![CDATA[Mary Pym born 1935
Danish artist based in England
Spring on the Hampshire Downs - n.d.
Oil on board - 26 x 24”]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065608468587730</loc>
    <lastmod>2026-06-02T19:21:52+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-02T19:21:52+09:00</news:publication_date>
      <news:title><![CDATA[심부전 환자들에게 새로운 희망, "심장 패치"로 약해진 심장 강화]]></news:title>
      <news:keywords><![CDATA[심장패치, 심부전환자]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260602/p1065608468587730_704_h.png</image:loc>
      <image:caption><![CDATA[심장에 부착하는 조직 패치는 심장 근육을 강화하고 심부전을 완화할 수 있다. © Universitätsmedizin Göttingen / Eva Meyer-Besting]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065569571608355</loc>
    <lastmod>2026-06-02T08:32:01+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-02T08:32:01+09:00</news:publication_date>
      <news:title><![CDATA[췌장암 환자, 새로운 약물 다락손라십(Daraxonrasib)으로 생존 기간 두 배 연장]]></news:title>
      <news:keywords><![CDATA[췌장암치료막물, 다락손라쉽, daraxonrasib, RAS종양유전자변이]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260602/p1065569571608355_245_h.png</image:loc>
      <image:caption><![CDATA[췌장암은 모든 암 중에서 가장 치명적인 암이며, 진단 후 1년 이상 생존하는 환자는 극히 드물다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065594103229822</loc>
    <lastmod>2026-06-01T15:21:24+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-01T15:21:24+09:00</news:publication_date>
      <news:title><![CDATA[혈액  검사로 앞으로 치매 걸릴지 조기 진단 가능]]></news:title>
      <news:keywords><![CDATA[알츠하이머조기진단, 치매, 혈액검사로치매발병가능성조기진단]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260601/p1065594103229822_330_h.png</image:loc>
      <image:caption><![CDATA[혈액 검사를 통해 중년기에 알츠하이머병의 초기 분자적 징후를 발견할 수 있다. pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065571323149605</loc>
    <lastmod>2026-06-01T09:02:12+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-06-01T09:02:12+09:00</news:publication_date>
      <news:title><![CDATA[비둘기의 나침반은 간에 있다.]]></news:title>
      <news:keywords><![CDATA[비둘기회귀성, 비둘기나침반은간에있다]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260601/p1065571323149605_642_h.png</image:loc>
      <image:caption><![CDATA[비둘기는 집으로 돌아가는 놀라운 능력을 가지고 있다. 연구진은 이제 그 능력의 새로운 메커니즘을 발견했을 가능성이 있다. © Christian Ziegler/Max Planck Institute of Animal Behavior]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065620990154457</loc>
    <lastmod>2026-05-30T22:49:57+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-30T22:49:57+09:00</news:publication_date>
      <news:title><![CDATA[해양의 50%는 아직도 탐사되지 않았다.]]></news:title>
      <news:keywords><![CDATA[생물다양성, 미지의해향, 해양절반은미탐사]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260530/p1065620990154457_965_h.png</image:loc>
      <image:caption><![CDATA[심해에는 아직 알려지지 않은 수많은 종들이 서식하고 있을 가능성이 높다. 에피메리아(Epimeria) 속의 이 단각류는 최근 알류샨 해구의 6,500미터가 넘는 깊이에서 발견되었다. © Henry Knauber/Senckenberg]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065621601489713</loc>
    <lastmod>2026-05-29T23:00:46+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T23:00:46+09:00</news:publication_date>
      <news:title><![CDATA[바커케미칼코리아, 김지영 부사장 ‘남녀고용평등 유공자 포상’ 철탑산업훈장 수훈]]></news:title>
      <news:keywords><![CDATA[바커케미칼코리아, 김지영부사장, 바커코리아김지영, 2026남녀고용평등공헌포상, 철탑산업훈장]]></news:keywords>
    </news:news>
    <image:image>
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      <image:caption><![CDATA[‘2026 남녀고용평등 공헌포상 기념식’에서 김지영 바커케미칼코리아 관리총괄 부사장이 철탑산업훈장을 수훈했다. 사진제공:바커케미칼코리아]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065614324083449</loc>
    <lastmod>2026-05-29T21:15:51+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T21:15:51+09:00</news:publication_date>
      <news:title><![CDATA[열과 폐수 없이 광석에서 리튬 추출, 더 쉽고 더 저렴해진다.]]></news:title>
      <news:keywords><![CDATA[리륨추출방법, 염호, 스포듀민, 알칼리금속]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260529/p1065614324083449_231_h.png</image:loc>
      <image:caption><![CDATA[열과 폐수 없이 광석에서 리튬 추출, 더 쉽고 더 저렴해진다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065589995164492</loc>
    <lastmod>2026-05-29T14:13:44+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T14:13:44+09:00</news:publication_date>
      <news:title><![CDATA[FAO 한국협력연락사무소, ‘Agrifood Futures Week’ 행사 성공적 마무리]]></news:title>
      <news:keywords><![CDATA[FAO한국협력연락사무소, 이나라부소장, 솅야오탕, 이요한원장, 강병철학장, 서울대학교농업생명대학교]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260529/p1065589995164492_667_h.jpg</image:loc>
      <image:caption><![CDATA[FAO 한국협력연락사무소, ‘Agrifood Futures Week’ 행사 성공적 마무리]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065572778284659</loc>
    <lastmod>2026-05-29T09:26:44+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T09:26:44+09:00</news:publication_date>
      <news:title><![CDATA[생물형광: 불도롱뇽도 빛을 낸다]]></news:title>
      <news:keywords><![CDATA[불도룡뇽, 생물형광, 의사소통]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260529/p1065572778284659_974_h.png</image:loc>
      <image:caption><![CDATA[불도롱뇽은 자외선에 노출된 후 생체형광이 녹색을 띈다. © Bernat Burriel-Carranza/ Museu de Ciències Naturals de Barcelona]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065543250506721</loc>
    <lastmod>2026-05-29T01:14:54+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T01:14:54+09:00</news:publication_date>
      <news:title><![CDATA[오늘의 명화 "Orange"]]></news:title>
      <news:keywords><![CDATA[오늘의명화]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260529/p1065543250506721_139_h.jpg</image:loc>
      <image:caption><![CDATA[Anna Ileby (b. 1984, Swedish).
"Orange"
Oil on canvas.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065542856292651</loc>
    <lastmod>2026-05-29T01:07:25+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-29T01:07:25+09:00</news:publication_date>
      <news:title><![CDATA[오늘의 명화 "The Bride's Song" 1881]]></news:title>
      <news:keywords><![CDATA[핀란드작가, 오늘의명화]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260529/p1065542856292651_661_h.jpg</image:loc>
      <image:caption><![CDATA[Gunnar Berndtson
( 1854 - 1895 ) Finnish painter
"The Bride's Song" oil on canvas 66 x 82,5 cm, 1881
Finnish National Gallery]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065616098703529</loc>
    <lastmod>2026-05-28T21:28:48+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-28T21:28:48+09:00</news:publication_date>
      <news:title><![CDATA[중력파로 암흑물질 입자를 탐지할 수 있다 (영상)]]></news:title>
      <news:keywords><![CDATA[암흑물질, 중력파탐지]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260528/p1065616098703529_354_h.png</image:loc>
      <image:caption><![CDATA[블랙홀 병합에서 발생하는 중력파에는 암흑 물질 입자에 대한 단서가 담겨 있을 수 있다. © Roy et al./ GRChombo]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065570061065117</loc>
    <lastmod>2026-05-28T08:41:08+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-28T08:41:08+09:00</news:publication_date>
      <news:title><![CDATA[도시정원에 곤충들을 모이게 하려면]]></news:title>
      <news:keywords><![CDATA[도시정원, 호박벌]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260528/p1065570061065117_627_h.png</image:loc>
      <image:caption><![CDATA[컴프리는 주로 호박벌에 의해 수분되는데, 호박벌은 포장된 표면도 건널 수 있다. 이와 대조적으로, 다른 많은 식물의 수분 매개자는 도시 정원에서 찾아보기 어렵다. © Marcus Schmidt]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065614223489645</loc>
    <lastmod>2026-05-27T20:57:21+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-27T20:57:21+09:00</news:publication_date>
      <news:title><![CDATA[에볼라 최신 소식: 바이러스 유전체 염기서열 분석 완료, 항바이러스제 개발 연구 진행 중]]></news:title>
      <news:keywords><![CDATA[에볼라, 콩고, 에볼라발병의원인, 에볼라_바이러스유전체염기서열분석완료]]></news:keywords>
    </news:news>
    <image:image>
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      <image:caption><![CDATA[세포 위의 에볼라 바이러스. 연구진은 현재 분디부교 에볼라 바이러스의 유전체 서열을 분석했다. 이는 에볼라 발병의 기원에 대해 더 많은 정보를 제공한다. © NIAID/NIH]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065608104979906</loc>
    <lastmod>2026-05-27T19:15:29+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-27T19:15:29+09:00</news:publication_date>
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      <news:keywords><![CDATA[금이변색되지않은이유, 금_팔라듐촉매, 표면원자재배열, 면심입방구조, 금의산화성]]></news:keywords>
    </news:news>
    <image:image>
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      <image:caption><![CDATA[금 표면은 산화되지 않기 때문에 광택을 유지한다. 그렇다면 그 이유는 무엇일까?]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065591311636679</loc>
    <lastmod>2026-05-26T14:35:13+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-26T14:35:13+09:00</news:publication_date>
      <news:title><![CDATA[자동차와 트럭에 태양광 패널을 설치했을 때 효과는?]]></news:title>
      <news:keywords><![CDATA[차체에태양광패널부착효과, 차량통합형태양광발전시스템, VIPV, 수직태양광발전]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260526/p1065591311636679_239_h.png</image:loc>
      <image:caption><![CDATA[차체에 통합된 태양광 패널은 전기 자동차의 주행 거리를 크게 늘릴 수 있다. © Lightyear]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065589929038553</loc>
    <lastmod>2026-05-26T14:12:23+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
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      <news:publication_date>2026-05-26T14:12:23+09:00</news:publication_date>
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      <news:keywords><![CDATA[연구신뢰성3R, 재현성, 견고성, 복제가능성, 진실성과개방성]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260526/p1065589929038553_771_h.png</image:loc>
      <image:caption><![CDATA[과학 연구는 재현 가능하고, 복제 가능하며, 견고해야 한다.]]></image:caption>
    </image:image>
  </url>
  <url>
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    <lastmod>2026-05-25T09:54:17+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-25T09:54:17+09:00</news:publication_date>
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      <news:keywords><![CDATA[화성탐사선, 메이븐, MAVEN, 즈완_울프효과, 자기권계면, 쌍극자, 화성자기장]]></news:keywords>
    </news:news>
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      <image:loc>https://thescienceplus.com/news/data/20260525/p1065574446194597_843_h.png</image:loc>
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    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065623379316000</loc>
    <lastmod>2026-05-24T23:29:05+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-24T23:29:05+09:00</news:publication_date>
      <news:title><![CDATA[루골 용액, 인터넷에서 요오드 결핍 치료제로 홍보돼 위험성 심각]]></news:title>
      <news:keywords><![CDATA[루골용액, 요오드결핍, 요오드보충제, 요오드첨가소금]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260524/p1065623379316000_273_h.png</image:loc>
      <image:caption><![CDATA[루골 용액은 온라인에서 요오드 결핍 치료제로 광고되고 있다. 그러나 이 용액은 건강에 해롭고 내복용으로 사용해서는 안 된다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065610458402798</loc>
    <lastmod>2026-05-24T19:54:58+09:00</lastmod>
    <news:news>
      <news:publication>
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      </news:publication>
      <news:publication_date>2026-05-24T19:54:58+09:00</news:publication_date>
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      <news:keywords><![CDATA[빙핵, 화산폭발지수, VEI]]></news:keywords>
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    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065602044118452</loc>
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      <image:caption><![CDATA[AI 에이전트: 맹목적인 추구 위험성]]></image:caption>
    </image:image>
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    </image:image>
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  <url>
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      </news:publication>
      <news:publication_date>2026-05-24T00:04:14+09:00</news:publication_date>
      <news:title><![CDATA[소셜 미디어 인플루언서의 커뮤니케이션과 윤리적 과제]]></news:title>
      <news:keywords><![CDATA[소셜미디어인플루언서]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260524/p1065539087649502_178_h.png</image:loc>
      <image:caption><![CDATA[소셜 미디어 인플루언서의 커뮤니케이션과 윤리적 과제]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065572341099783</loc>
    <lastmod>2026-05-23T09:19:02+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-23T09:19:02+09:00</news:publication_date>
      <news:title><![CDATA[철강 산업에서 비용과 CO2 배출량을 줄이는 방안]]></news:title>
      <news:keywords><![CDATA[철강산업이산화탄소배출량줄이는방안, 석탄화력발전소]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260523/p1065572341099783_213_h.png</image:loc>
      <image:caption><![CDATA[a. 세계철강협회의 과거 1차 철강 생산 데이터(1900~2022년)와 SSP2 현행 정책 시행 REMIND 시나리오 데이터(2023~2050년)를 결합하여 파악한 연속적인 철강 생산 물결. WW2, 제2차 세계 대전. b. GEM 철강 공장 추적 데이터35에서 도출한 과거 및 계획된 BF-BOF 설비 증설. 지역 그룹은 방법론에 정의되어 있다. (출처: Published: 21 May 2026 / Averting the steel carbon lock-in through strategic green investments / nature climate change)]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065601597570090</loc>
    <lastmod>2026-05-22T17:26:50+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-22T17:26:50+09:00</news:publication_date>
      <news:title><![CDATA[보존료가 고혈압을 유발할 수 있다.]]></news:title>
      <news:keywords><![CDATA[보존료, 방부제]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260522/p1065601597570090_536_h.png</image:loc>
      <image:caption><![CDATA[식품 첨가물, 특히 특정 보존료는 고혈압과 심혈관 질환을 유발할 수 있다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065573531315264</loc>
    <lastmod>2026-05-20T09:38:37+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-20T09:38:37+09:00</news:publication_date>
      <news:title><![CDATA[도시 동물이 더 대담하고 호기심이 많다.]]></news:title>
      <news:keywords><![CDATA[도시동물이더대담하다]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260520/p1065573531315264_602_h.png</image:loc>
      <image:caption><![CDATA[도시의 비둘기들은 인간을 전혀 두려워하지 않다. 이와 유사한 행동 변화는 다른 많은 도시 동물들에게서도 관찰할 수 있다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065617206050539</loc>
    <lastmod>2026-05-19T21:46:03+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-19T21:46:03+09:00</news:publication_date>
      <news:title><![CDATA[수면 무호흡증에 도움이 되는 알약 출시]]></news:title>
      <news:keywords><![CDATA[양압기, 수면무호흡증, AD109, 아프니메드, 신경근, CPAP]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260519/p1065617206050539_312_h.png</image:loc>
      <image:caption><![CDATA[치료받은 사람의 약 40%에서 야간 호흡 정지 횟수가 절반으로 줄었고, 22.3%는 시간당 5회 미만의 호흡 정지를 기록하여 수면 무호흡증이 없는 사람의 정상 수준에 도달했다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065595702245700</loc>
    <lastmod>2026-05-19T15:48:25+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-19T15:48:25+09:00</news:publication_date>
      <news:title><![CDATA[화학적 패턴으로 외계 생명체를 찾아내는 방법]]></news:title>
      <news:keywords><![CDATA[외계생명체탐색방법, 아미노산과지방산의분포패턴분석, 외계새ㅇ명채화학적패턴, NASA]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260519/p1065595702245700_970_h.png</image:loc>
      <image:caption><![CDATA[외계 생명체를 탐지하는 데 사용할 수 있는 화학적 특징은 무엇일까? © NASA]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065620454832345</loc>
    <lastmod>2026-05-18T22:40:06+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-18T22:40:06+09:00</news:publication_date>
      <news:title><![CDATA[혼합 폴리에스터의 재활용이 이렇게 가능해진다.]]></news:title>
      <news:keywords><![CDATA[폴리에스테르재활용, PET, 단량체, PTT]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260518/p1065620454832345_791_h.png</image:loc>
      <image:caption><![CDATA[플라스틱 병에서 추출한 PET는 이미 쉽게 재활용된다. 하지만 PET로 만든 폴리에스터 섬유와 직물은 그렇지 않다. pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065590356005106</loc>
    <lastmod>2026-05-18T14:19:44+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-18T14:19:44+09:00</news:publication_date>
      <news:title><![CDATA[안개는 살아있다!]]></news:title>
      <news:keywords><![CDATA[안개속미생물, 포름알데히드, 안개박테리아]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260518/p1065590356005106_720_h.png</image:loc>
      <image:caption><![CDATA[안개 속 미생물은 안개가 없는 시기의 건조한 공기나 에어로졸에서 발견되는 미생물과는 종 구성에서 상당한 차이를 보였다.]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065620646154761</loc>
    <lastmod>2026-05-17T22:44:05+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-17T22:44:05+09:00</news:publication_date>
      <news:title><![CDATA[이별의 신경생물학적 역학]]></news:title>
      <news:keywords><![CDATA[코르티솔, 이별후유증, 연인과헤어질때고통, 사회적고통]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260517/p1065620646154761_678_h.png</image:loc>
      <image:caption><![CDATA[사랑은 우리를 하나로 묶어주지만, 바로 그 때문에 이별은 우리가 생각하는 것보다 훨씬 더 큰 상처를 남길 수 있다. © alllessandro_ / pixabay.com]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065573827214367</loc>
    <lastmod>2026-05-17T09:43:57+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-17T09:43:57+09:00</news:publication_date>
      <news:title><![CDATA[호피온 고리를 제어하고 절단할 수 있음을 최초로 입증]]></news:title>
      <news:keywords><![CDATA[호피온, Hopion, 토폴로지, 스핀전류, 강자성물질, 스핀궤도토크, SOT]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260517/p1065573827214367_464_h.png</image:loc>
      <image:caption><![CDATA[호피온은 자기 물질에서 발견되는 고리 모양의 스핀 구조다. 물리학자들은 처음으로 호피온을 분리하는 방법을 발견했다. © Kasai et al/ APS Open Science, CC-by 4.0]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065611881822691</loc>
    <lastmod>2026-05-16T20:18:26+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-16T20:18:26+09:00</news:publication_date>
      <news:title><![CDATA[수면 부족, 과다 수면 모두 장기의 조기 노화 촉진]]></news:title>
      <news:keywords><![CDATA[최적의수면시간, 과다수면, 수면부족, 생체리듬, 수면패턴]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260516/p1065611881822691_765_h.png</image:loc>
      <image:caption><![CDATA[수면은 너무 많지도, 너무 적지도 않아야 한다. pixabay]]></image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://thescienceplus.com/news/newsview.php?ncode=1065614993496206</loc>
    <lastmod>2026-05-15T21:09:48+09:00</lastmod>
    <news:news>
      <news:publication>
        <news:name>더사이언스플러스</news:name>
        <news:language>ko</news:language>
      </news:publication>
      <news:publication_date>2026-05-15T21:09:48+09:00</news:publication_date>
      <news:title><![CDATA[가스와 먼지에서 탄생한 별들]]></news:title>
      <news:keywords><![CDATA[제임스웹우주망원경, FEAST, 나선은하메시에51, M51, 관측프로그램]]></news:keywords>
    </news:news>
    <image:image>
      <image:loc>https://thescienceplus.com/news/data/20260515/p1065614993496206_740_h.png</image:loc>
      <image:caption><![CDATA[사냥개자리 방향에 있는 은하 M 51의 나선팔 중 하나의 길쭉한 부분이다. 붉은색 영역은 별이 형성되는 가스와 먼지다. 흰색 점들은 밝은 성단을 나타낸다. © ESA/Webb, NASA & CSA, A. Pedrini, A. Adamo (스톡홀름 대학교) 및 FEAST JWST 팀]]></image:caption>
    </image:image>
  </url>
</urlset>
