에 의해 게시 Sponholtz Productions
1. The student who has mastered the ability to visualize molecules in three-dimensions; e.g., molecular geometry, conformational changes, and stereochemical principles, is rewarded with a better understanding of chemical and physical properties, and, perhaps most importantly, the ability to predict chemical reactivity as well as draw/predict organic chemistry mechanisms.
2. In addition, the study of chemistry requires an understanding of how atoms within molecules are oriented in three-dimensions, conformational changes of these molecules, stereochemical principles of these molecules, and the changes these molecules undergo during reactions (reaction mechanisms).
3. Important/Interesting molecules are divided into nine different groups; “Chemical Weaponry”, “Controlled Substances”, “Various Organic Molecules”, “Medicines”, “Interesting Natural Products”, “Biological Molecules”, “Chemical Toxins”, “Explosives”, and “Carbon Compounds”.
4. This App will help make the connection between two- and three-dimensional depictions of molecules reinforcing molecular geometry principles as well as learning interesting facts for over 50 important/interesting molecules.
5. However, molecules and reactions of these molecules occur in three-dimensions and the student who cannot imagine or draw these molecules in three-dimensions inevitably does not pass.
6. We propose our solution via three-dimensional VR chemistry teaching/review tools to help high school and college chemistry students as well as appeal to anyone of all ages who is interested in learning basic chemistry principles.
7. When one of those molecules is selected it appears in three-dimensions and interesting facts are narrated.
8. After a category is chosen, several molecules of interest are shown on two-dimensional whiteboards.
9. Unfortunately, the study of chemistry has traditionally always been taught in two-dimensions; e.g., a page in a book, a PowerPoint, or the whiteboard during lecture.
10. In addition, one can interact with the molecule; e.g., change its size and orientation.
또는 아래 가이드를 따라 PC에서 사용하십시오. :
PC 버전 선택:
소프트웨어 설치 요구 사항:
직접 다운로드 가능합니다. 아래 다운로드 :
설치 한 에뮬레이터 애플리케이션을 열고 검색 창을 찾으십시오. 일단 찾았 으면 A.R. Chem 검색 막대에서 검색을 누릅니다. 클릭 A.R. Chem응용 프로그램 아이콘. 의 창 A.R. Chem Play 스토어 또는 앱 스토어의 스토어가 열리면 에뮬레이터 애플리케이션에 스토어가 표시됩니다. Install 버튼을 누르면 iPhone 또는 Android 기기 에서처럼 애플리케이션이 다운로드되기 시작합니다. 이제 우리는 모두 끝났습니다.
"모든 앱 "아이콘이 표시됩니다.
클릭하면 설치된 모든 응용 프로그램이 포함 된 페이지로 이동합니다.
당신은 아이콘을 클릭하십시오. 그것을 클릭하고 응용 프로그램 사용을 시작하십시오.
다운로드 A.R. Chem Mac OS의 경우 (Apple)
다운로드 | 개발자 | 리뷰 | 평점 |
---|---|---|---|
$0.99 Mac OS의 경우 | Sponholtz Productions | 9 | 5.00 |
PC를 설정하고 Windows 11에서 A.R. Chem 앱을 다운로드하는 단계:
Important/Interesting molecules are divided into nine different groups; “Chemical Weaponry”, “Controlled Substances”, “Various Organic Molecules”, “Medicines”, “Interesting Natural Products”, “Biological Molecules”, “Chemical Toxins”, “Explosives”, and “Carbon Compounds”. After a category is chosen, several molecules of interest are shown on two-dimensional whiteboards. When one of those molecules is selected it appears in three-dimensions and interesting facts are narrated. In addition, one can interact with the molecule; e.g., change its size and orientation. This App will help make the connection between two- and three-dimensional depictions of molecules reinforcing molecular geometry principles as well as learning interesting facts for over 50 important/interesting molecules. Unfortunately, the study of chemistry has traditionally always been taught in two-dimensions; e.g., a page in a book, a PowerPoint, or the whiteboard during lecture. However, molecules and reactions of these molecules occur in three-dimensions and the student who cannot imagine or draw these molecules in three-dimensions inevitably does not pass. In addition, the study of chemistry requires an understanding of how atoms within molecules are oriented in three-dimensions, conformational changes of these molecules, stereochemical principles of these molecules, and the changes these molecules undergo during reactions (reaction mechanisms). The student who has mastered the ability to visualize molecules in three-dimensions; e.g., molecular geometry, conformational changes, and stereochemical principles, is rewarded with a better understanding of chemical and physical properties, and, perhaps most importantly, the ability to predict chemical reactivity as well as draw/predict organic chemistry mechanisms. We propose our solution via three-dimensional VR chemistry teaching/review tools to help high school and college chemistry students as well as appeal to anyone of all ages who is interested in learning basic chemistry principles. Learn more at sponholtzproductions.com.
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