ALEX Resources

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Learning Activities (3) Building blocks of a lesson plan that include before, during, and after strategies to actively engage students in learning a concept or skill. Classroom Resources (3)


ALEX Learning Activities  
   View Standards     Standard(s): [MA2019] REG-8 (8) 6 :
6. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used.

a. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities.

b. Interpret scientific notation that has been generated by technology.
[MA2019] ACC-7 (7) 16 :
16. Express and compare very large or very small numbers in scientific notation. [Grade 8, 5]

a. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used, expressing answers in scientific notation. [Grade 8, 6]

b. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities. [Grade 8, 6a]

c. Interpret scientific notation that has been generated by technology. [Grade 8, 6b]
Subject: Mathematics (7 - 8)
Title: Operations With Scientific Notation Practice
Description:

This Operations with Scientific Notation Practice Problems Quizizz game has 23 questions to test the understanding of performing operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used, and is intended to be used as an assessment activity. Quizizz allows the teacher to conduct student-paced formative assessments through quizzing, collaboration, peer-led discussions, and presentation of content in a fun and engaging way for students of all ages.

 

(This learning activity can be used as a stand-alone activity but is best used as an After Activity. The During and After Activities can be found in the Notes or Recommendations section.)




   View Standards     Standard(s): [MA2019] REG-8 (8) 6 :
6. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used.

a. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities.

b. Interpret scientific notation that has been generated by technology.
[MA2019] ACC-7 (7) 16 :
16. Express and compare very large or very small numbers in scientific notation. [Grade 8, 5]

a. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used, expressing answers in scientific notation. [Grade 8, 6]

b. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities. [Grade 8, 6a]

c. Interpret scientific notation that has been generated by technology. [Grade 8, 6b]
Subject: Mathematics (7 - 8)
Title: Operations With Scientific Notation Introduction
Description:

In this learning activity, a teaching video will help students learn how to perform operations with numbers expressed in scientific notation, including problems with both decimal and scientific notation. The students will use scientific notation and choose units of appropriate size for measurements of very large or very small quantities (e.g., use millimeters per year for seafloor spreading). Finally, they will interpret scientific notation that has been generated by technology.

 

This learning activity can be used as a stand-alone activity or a Before Activity. The During and After activities can be found in the Notes or Recommendations section.




   View Standards     Standard(s): [MA2019] REG-8 (8) 6 :
6. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used.

a. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities.

b. Interpret scientific notation that has been generated by technology.
[MA2019] ACC-7 (7) 16 :
16. Express and compare very large or very small numbers in scientific notation. [Grade 8, 5]

a. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used, expressing answers in scientific notation. [Grade 8, 6]

b. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities. [Grade 8, 6a]

c. Interpret scientific notation that has been generated by technology. [Grade 8, 6b]
Subject: Mathematics (7 - 8)
Title: Operations With Scientific Notation Lesson
Description:

In this learning activity, students learn how to perform operations with numbers expressed in scientific notation, including problems with both decimal and scientific notation. The students will use scientific notation and choose units of appropriate size for measurements of very large or very small quantities (e.g., use millimeters per year for seafloor spreading). Finally, they will interpret scientific notation that has been generated by technology.

This learning activity can be used as a stand-alone activity or a During Activity. The Before and After activities can be found in the Notes or Recommendations section.




ALEX Learning Activities: 3

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ALEX Classroom Resources  
   View Standards     Standard(s): [MA2019] ACC-7 (7) 16 :
16. Express and compare very large or very small numbers in scientific notation. [Grade 8, 5]

a. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used, expressing answers in scientific notation. [Grade 8, 6]

b. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities. [Grade 8, 6a]

c. Interpret scientific notation that has been generated by technology. [Grade 8, 6b]
[MA2019] REG-8 (8) 5 :
5. Estimate and compare very large or very small numbers in scientific notation.
[MA2019] REG-8 (8) 6 :
6. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used.

a. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities.

b. Interpret scientific notation that has been generated by technology.
Subject: Mathematics (7 - 8)
Title: Comparing Powers of 10
URL: https://aptv.pbslearningmedia.org/resource/mgbh-math-ee-compow/comparing-powers-of-10/
Description:

Use powers of 10 to investigate scientific notation. This interactive exercise focuses on determining which of a series of numbers written in scientific notation is larger and by what magnitude then you need to use your critical thinking skills to determine methods for general cases.

This resource is part of the Math at the Core: Middle School collection.



   View Standards     Standard(s): [MA2019] REG-8 (8) 5 :
5. Estimate and compare very large or very small numbers in scientific notation.
[MA2019] REG-8 (8) 6 :
6. Perform operations with numbers expressed in scientific notation, including problems where both decimal and scientific notation are used.

a. Use scientific notation and choose units of appropriate size for measurements of very large or very small quantities.

b. Interpret scientific notation that has been generated by technology.
Subject: Mathematics (8)
Title: Grade 8 Mathematics Module 1, Topic B: Magnitude and Scientific Notation
URL: https://www.engageny.org/resource/grade-8-mathematics-module-1-topic-b-overview
Description:

In Module 1, Topic B, students’ understanding of integer exponents is expanded to include the concept of magnitude as a measurement. Students learn to estimate how big or how small a number is using magnitude. In Lesson 7, students learn that positive powers of ten are large numbers and negative powers of 10 are very small numbers. In Lesson 8, students will express large numbers in the form of a single digit times a positive power of 10 and express how many times as much one of these numbers is compared to another. Students estimate and compare national to household debt and use estimates of the number of stars in the universe to compare with the number of stars an average human can see.

Lessons 9 through 13 immerse students in the scientific notation. Each lesson demonstrates the need for such a notation and then how to compare and compute with numbers in scientific notation. In Lesson 9, students learn how to write numbers in scientific notation and the importance of the exponent with respect to magnitude. The number line is used to illustrate different magnitudes of 10 and students estimate where a particular number, written in scientific notation, belongs on the number line. Also, in this set of lessons, students will use what they know about exponential notation, properties of exponents, and scientific notation to interpret results that have been generated by technology. 

Continuing with magnitude, Lesson 10 shows students how to operate with numbers in scientific notation by making numbers have the same magnitude. In Lessons 11, 12, and 13, students reason quantitatively with scientific notation to understand several instances of how the notation is used in science. For example, students compare masses of protons and electrons written in scientific notation, then compute how many times heavier one is than the other by using their knowledge of ratio and properties of exponents. Students use the population of California and their knowledge of proportions to estimate the population of the U.S. assuming population density is the same. Students calculate the average lifetime of subatomic particles and rewrite very small quantities (e.g., 1.6 × 10-27 kg) in a power-of-ten unit of kilograms that supports easier comparisons of the mass.

It is the direct relationship to science in Lesson 12 that provides an opportunity for students to understand why certain units were developed, like the gigaelectronvolt. Given a list of very large numbers, students will choose a unit of appropriate size and then rewrite numbers in the new unit to make comparisons easier. In Lesson 13, students combine all the skills of Module 1 as they compare numbers written in scientific notation by rewriting the given numbers as numbers with the same magnitude, using the properties of exponents. By the end of this topic, students are able to compare and perform operations on numbers given in both decimal and scientific notation.



ALEX Classroom Resources: 2

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