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Math Presentations for Google Slides™ 2nd Grade Module 5

Rated 4.67 out of 5, based on 3 reviews
4.7 (3 ratings)
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Engaging Teacher
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Grade Levels
2nd
Subjects
Resource Type
Standards
Formats Included
  • Google Drive™ folder
$20.00
$20.00
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Engaging Teacher
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  1. THIS PRODUCT INCLUDES ALL LESSONS FOR THE YEAR FOR MODULES 1-8.*** VISIT THE INDIVIDUAL LESSONS IN MY STORE FOR COMPLETE PREVIEWS (EACH PREVIEW SHOWS EVERY PAGE IN THE PRODUCT) ***Teach Engage NY Math easily using Google Slides™! These presentations include slides for each component of the lesson in
    Price $99.00Original Price $152.00Save $53.00

Description

THIS PRODUCT INCLUDES ALL LESSONS FOR MODULE 5.

*** VISIT THE INDIVIDUAL LESSONS IN MY STORE FOR COMPLETE PREVIEWS (EACH PREVIEW SHOWS EVERY PAGE IN THE PRODUCT) ***

Teach Engage NY Math easily using Google Slides™! 


These presentations include slides for each component of the lesson including: Fluency, Application Problem, Concept Development and Student Debrief. 

Teaching Engage NY Math using these presentations will:


  • Reduce prep time and improves lesson pacing as you don’t have to refer back to the teacher’s manual during the lesson. 
  • Let anyone follow along. Now, you can feel comfortable leaving the Engage NY Math lesson for substitutes to teach. 
  • Keep the lesson on track - both you and the students have a visual reminder of what is coming up next in the lesson. 
  • Help you recover when the lesson goes “off course”.


Adorable “Dot Dudes” theme keeps students engaged throughout the lesson.


Unabridged lessons allow you to teach the curriculum with fidelity. 


Editable text gives you the opportunity to customize lessons for your classroom. To secure the clip art I use in my products, the slide backgrounds are not editable. 


This product aligns with Engage NY Math, a free program. I am selling my time and creativity in designing supplemental (and engaging) presentations specifically for Google Slides.

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Standards

to see state-specific standards (only available in the US).
Add and subtract within 1000, using concrete models or drawings and strategies based on place value, properties of operations, and/or the relationship between addition and subtraction; relate the strategy to a written method. Understand that in adding or subtracting three-digit numbers, one adds or subtracts hundreds and hundreds, tens and tens, ones and ones; and sometimes it is necessary to compose or decompose tens or hundreds.
Mentally add 10 or 100 to a given number 100–900, and mentally subtract 10 or 100 from a given number 100–900.
Explain why addition and subtraction strategies work, using place value and the properties of operations.
Construct viable arguments and critique the reasoning of others. Mathematically proficient students understand and use stated assumptions, definitions, and previously established results in constructing arguments. They make conjectures and build a logical progression of statements to explore the truth of their conjectures. They are able to analyze situations by breaking them into cases, and can recognize and use counterexamples. They justify their conclusions, communicate them to others, and respond to the arguments of others. They reason inductively about data, making plausible arguments that take into account the context from which the data arose. Mathematically proficient students are also able to compare the effectiveness of two plausible arguments, distinguish correct logic or reasoning from that which is flawed, and-if there is a flaw in an argument-explain what it is. Elementary students can construct arguments using concrete referents such as objects, drawings, diagrams, and actions. Such arguments can make sense and be correct, even though they are not generalized or made formal until later grades. Later, students learn to determine domains to which an argument applies. Students at all grades can listen or read the arguments of others, decide whether they make sense, and ask useful questions to clarify or improve the arguments.
Attend to precision. Mathematically proficient students try to communicate precisely to others. They try to use clear definitions in discussion with others and in their own reasoning. They state the meaning of the symbols they choose, including using the equal sign consistently and appropriately. They are careful about specifying units of measure, and labeling axes to clarify the correspondence with quantities in a problem. They calculate accurately and efficiently, express numerical answers with a degree of precision appropriate for the problem context. In the elementary grades, students give carefully formulated explanations to each other. By the time they reach high school they have learned to examine claims and make explicit use of definitions.

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