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六年級科學|第 2 季 |能量影響物質

歡迎來到我們充滿活力的第二季課程!在本課程中,我們將研究原子、分子、熱能、物質狀態、粒子運動、傳熱和數據分析! *本課程可以不依序從其他宿舍學習*
Mrs. Victoria Laird, M.S.
平均評分:
5.0
評論數量:
(25)
班級

包含什麼

8 現場會議
6 小時 40 分鐘 上課時間
作業
每週 1 小時. Students may be required to complete 20-30 minutes of homework, reading, activities, etc. per each live lesson depending on the flow of the class.
評估
Assessments will be given as an indication of how well a student is learning the content and skills for the class and to help me continuously develop a better curriculum. Students will be assigned a number on a proficiency scale* that lets the student, parent, and teacher know how the student is doing. Each assignment will have a rubric attached to it letting the student, parent, and teacher know the expectations for the assessment. Assessments may be multiple choice, free response, modeling, or many other types. Most assessments will be taken in class, but some may be at-home projects. Assessment retakes and/or revisions will be provided and encouraged. *See Grading Policy for our Proficiency Scale
等級
Grades will be provided by default to all learners. If students do not want their student graded or to not have access to their grades, please let me know. Grades allow students, parents, and myself to understand where the student is at in their learning. Classwork will be graded using the outline below: 0 - The students understanding is incomplete, incorrect, or missing. 1 - The students understanding is complete and correct. Assessments will be graded using the outline below: 0 - The student demonstrates no evidence of learning. 1 - The student demonstrates a minimal understanding of the concept. 2 - The student demonstrates a partial understanding of the concept. 3 - The student demonstrates a complete understanding of the concept. 4 - The student demonstrates an understanding of the concept and can apply it to a new situation. Students will be able and encouraged to retake assessments and redo classwork throughout this class.
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課堂經歷

英語程度 - 未知
美國 6 年級
*Students DO NOT need to take quarter classes in order*
Topics By Week: 
Week 1 - Structure of Molecules
Week 2 - The Reorganization of Matter
Week 3 - Effect of Heat Energy on Matter & Density
Week 4 - Particle Motion & Phase Change
Week 5 - Matter Types & Particle Motion 
Week 6 - Temperature & Heat Transfer
Week 7 - Engineering design to maximize or minimize heat energy (Part 1)
Week 8 - Engineering design to maximize or minimize heat energy (Part 2)

Structure of the Class: 
In my dynamic classroom, students dive into a myriad of learning experiences, from live debates and projects to intriguing educational escape rooms and enlightening  sessions. But it doesn't stop there - we also incorporate games and direct instruction to ensure a well-rounded education.

Each live session comes equipped with a set of slides and activity guidelines, readily accessible for students during and post-class. Plus, I've got a slew of videos and resources at the ready to shed light on those trickier concepts and deepen your background knowledge.

In-Class Requirements: 
Students are required to keep their cameras on during class. This allows me to better interact with them and for them to interact with each other.

My Teaching Style: 
My mission is to ignite a spark of scientific curiosity in my students, fostering lifelong learners who are scientifically savvy. I pour my energy into crafting lessons that aren't just informative, but also a whole lot of fun, ensuring students genuinely relish the learning journey.

I'm a firm believer in connecting classroom knowledge to real-world experiences, encouraging students to view their surroundings through an exploratory lens. 

Prior Knowledge: 
Students will not be required to have any prior knowledge of life science to participate in this course.
學習目標
Learning goals for this class are based on the National Next Generation Science Standards and the Utah Science and Engineering Education Standards.

-Students will develop models to show that molecules are made of different kinds, proportions and quantities of atoms. 
-Students will develop a model to predict the effect of heat energy on states of matter and density. 
-Students will plan and carry out an investigation to determine the relationship between temperature, the amount of heat transferred, and the change of average particle motion in various types or amounts of matter. 
-Students will design an object, tool, or process that minimizes or maximizes heat energy transfer. Identify criteria and constraints, develop a prototype for iterative testing, analyze data from testing, and propose modifications for optimizing the design solution.
學習目標

其他詳情

供應清單
1 pencil with an eraser
1 notebook, lined
1 pack of colored pencils, colored pens, markers, or crayons
Access to a Gmail account (many of our assignments are in Google Docs and Slides)
外部資源
除了 Outschool 教室外,本課程也使用:
來源
I will be referencing the Utah Science Curriculum Consortium's SEEd Storylines and Jordan School District's (Utah) open-source curriculum. Both are created by certified expert teachers. If you would like more information please see https://www.seedstorylines.org/ https://middlescience.jordandistrict.org/7th-8th-grade-exemplary-units/
已加入 November, 2023
5.0
25評論
教師檔案
教師專業知識和證書
猶他州 教學證書 在 科學
碩士 在 科學 從 University of Utah
學士學位 在 教育 從 Brigham Young University
I have a masters in Earth Science science and I have taught integrated science at the middle school level as well as high school Biology, Wildlife Biology, and Zoology.
During the last two years, I have worked as a Science Specialist for a large school district in Utah, supporting teachers and administration in science education. 

評論

現場團體小班課程
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US$20

每週或US$160 用於 8 課程
每週1次,共 8 週
50 分鐘

有2 位學習者完成此課程
即時視訊會議
年齡: 10-12
1-6 每班學員人數

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