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Chemdoodle 3D를 사용한 3D 분자 모델링, Pro Chemistry 소프트웨어 프로그램! (STEM)

이 혁신적인 과정에서 학생들은 ChemDoodle3D 소프트웨어 프로그램으로 다양한 3D 분자 모델을 구축합니다. 이 앱은 전문 과학자들이 분자를 설명하는 데 사용합니다! (홈스쿨, 방과 후) #academic
Quantum Physics for Kids
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8개의 라이브 미팅
수업 6 시간 40 분 시간
보고계신 지문은 자동 번역 되었습니다

수업 소개

영어 수준 - 알 수 없음
미국 5학년 - 8학년 학년
In this 8-session course, students learn how to use a powerful 3D chemistry modeling software called ChemDoodle3D! ChemDoodle3D is used by science professionals to create high-quality molecular models and graphics for research papers. In this software program, students will have access to unlimited atoms and a molecule library to build complex molecular structures. No more running out of atoms parts when building molecule models! Learners will also be able to save and output their 3D molecule graphics as printable pages. The course starts off gradually to help learners acclimate to the software program, and then proceeds to explore complex molecules including proteins, carbohydrates, RNA and DNA. 

This course complements and moves beyond the Hands-on Molecule Building courses that we offer, since the software has more built-in resources and advanced features. 

Learn more about the ChemDoodle3D software here: https://www.chemdoodle.com/3d

Please Note: Students will use the ChemDoodle3D software during this course, which can be downloaded and used for $18/month during the duration of the course (2 months, total cost $36). The software program can be downloaded for either Mac or Windows/PC computers. There is also a free 14-day trial available. Please see purchase info in the Supply List section for more details. 

This course has a Flexible Age Range. If a learner under the age of 10 has previously taken our Hands-on Molecule Building courses, and feels comfortable using a computer independently, then they may take this course. 

Class Schedule:
Session 1: Introduction to ChemDoodle Interface 
- Setting up Chem Doodle 3 for our sessions
- Molecules Made: Water, Alkanes (methane, ethane), Ethanethiol, Alkenes and Alkynes 
- Topics covered: The structure of atoms - protons, neutrons and electrons, types of Covalent Bonds, learn about chains of carbon atoms called alkanes, alkynes and alkenes

Session 2: Atom Orbitals and Molecule Shapes
- Molecules Made: Carbon dioxide, Methane, Carbonate ion, Chlorine Trifluoride, Sulfur Hexafluoride
- Topics covered: Electron orbitals, make orbitals using Chem Doodle widget, learn about VSEPR (Valence Shell Electron Pair Repulsion Theory) used to predict molecule shapes 

Session 3: Functional Groups
- Molecules Made: Formaldehyde, Citric Acid, Aspirin
- Topics Covered: Aldehyde and Acid functional groups in organic chemistry

Session 4: Proteins
- Molecules Made: Amino acid template, Methionine (needed for break down of fat to release energy), Lysine (calcium absorption)
- Topics Covered: Amino acids as building blocks of protein, protein structures (ribbon and backbone) and bringing in protein structures using the database in Chem Doodle 

Session 5: Carbohydrates
- Molecules Made: Glucose, Amylose (linear glucose chain in starch), Fructose, Sucrose and Stearic Acid
- Topics Covered: Idea of biomolecules, what are carbs, polysaccharides, lipids and how soap works with a fatty acid, concepts of hydrophobic and hydrophilic molecules

Session 6: Nucleic Acid Structures 
- Molecules Made: Deoxyribose, phosphate group and nitrogenous base Adenine
- Topics Covered: What are nucleic acids, what is a nucleotide and the structure of a nucleotide

Session 7: Nucleic Acids, DNA and RNA continued
- Molecules Made: Guanine and Thymine; turn them into Nucleotides 
- Topics Covered: Continue exploring nucleic acids, nucleotides and the structure of a nucleotide

Session 8: Nucleic Acids, DNA and RNA continued
- Molecules Made: Cytosine and a simplified model structure of DNA 
- Topics Covered: Continue exploring nucleic acids, nucleotides and the structure of a nucleotide
학습 목표
Learning Goals for each class session are listed below:
Session 1: Introduction to ChemDoodle Interface 
- Setting up Chem Doodle 3 for our sessions
- Molecules Made: Water, Alkanes (methane, ethane), Ethanethiol, Alkenes and Alkynes 
- Topics covered: The structure of atoms - protons, neutrons and electrons, types of Covalent Bonds, learn about chains of carbon atoms called alkanes, alkynes and alkenes

Session 2: Atom Orbitals and Molecule Shapes
- Molecules Made: Carbon dioxide, Methane, Carbonate ion, Chlorine Trifluoride, Sulfur Hexafluoride
- Topics covered: Electron orbitals, make orbitals using Chem Doodle widget, learn about VSEPR (Valence Shell Electron Pair Repulsion Theory) used to predict molecule shapes 

Session 3: Functional Groups
- Molecules Made: Formaldehyde, Citric Acid, Aspirin
- Topics Covered: Aldehyde and Acid functional groups in organic chemistry

Session 04: Proteins
- Molecules Made: Amino acid template, Methionine (needed for break down of fat to release energy), Lysine (calcium absorption)
- Topics Covered: Amino acids as building blocks of protein, protein structures (ribbon and backbone) and bringing in protein structures using the database in Chem Doodle 

Session 05: Carbohydrates
- Molecules Made: Glucose, Amylose (linear glucose chain in starch), Fructose, Sucrose and Stearic Acid
- Topics Covered: Idea of biomolecules, what are carbs, polysaccharides, lipids and how soap works with a fatty acid, concepts of hydrophobic and hydrophilic molecules

Session 06: Nucleic Acid Structures 
- Molecules Made: Deoxyribose, phosphate group and nitrogenous base Adenine
- Topics Covered: What are nucleic acids, what is a nucleotide and the structure of a nucleotide

Session 07: Nucleic Acids, DNA and RNA continued
- Molecules Made: Guanine and Thymine; turn them into Nucleotides 
- Topics Covered: Continue exploring nucleic acids, nucleotides and the structure of a nucleotide

Session 08: Nucleic Acids, DNA and RNA continued
- Molecules Made: Cytosine and a simplified model structure of DNA 
- Topics Covered: Continue exploring nucleic acids, nucleotides and the structure of a nucleotide
학습 목표

그 외 세부 사항

학부모 가이드
Please Note: Students will use the ChemDoodle3D software during this course to build a wide variety of molecule models. This software can be downloaded and used for $18/month during the duration of the course (2 months, total cost $36). The software program can be downloaded for either Mac or Windows/PC computers. An account is not needed to download the software. The monthly subscription can be cancelled by the parent after the course is completed. There is also a free 14-day trial available for the software, which we recommend starting with to begin the course. The free trial can be accessed at this link: https://www.chemdoodle.com/3d#trial
수업 자료
Students will use the ChemDoodle3D software (listed under External Resources) during this course, which can be downloaded and used for $18/month during the duration of the course (total cost $36 for 2 months of use). The software program can be downloaded for either Mac or Windows/PC computers. There is also a free 14-day trial available. The monthly subscription can be cancelled by the parent after the course is completed. 

We will send detailed instructions on how to purchase a license 2 weeks before the class begins. We recommend starting with the 14-day trial, and then after the trial, upgrading to a monthly license for 2 months, so that your child can access the software for a total of 10 weeks. The software can be downloaded from this link: https://www.chemdoodle.com/3d#trial 

Throughout this course, we'll guide students through the process of learning the ChemDoodle3D interface and provide step-by-step instruction for building a wide variety of complex molecule models!
For more details about the software, please visit: https://www.chemdoodle.com/3d
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가입일: June, 2020
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Quantum Physics for Kids is dedicated to introducing young students to the amazing world of quantum physics, invention & science research! We've been offering STEAM (Science, Technology, Engineering, Art & Math) classes and creating educational materials for students of all ages for over 15 years. We're excited to share this course content with more students through Outschool. 

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