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Mondrian Addition
Arts Integrated Small Group for Kinder Addition within 10 with Extension Options for Grade 1 Addition within 20
Mondrian Addition
Pairs with Reveal Math Lessons Kinder: 6-5
In this teacher-led small group activity, students will use the elements of visual art to create a composition inspired by painter Piet Mondrian that models and solves addition problems within 10, with an optional extension of adding within 20.
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MARYLAND STATE STANDARDS
MD Math Standards:
- K.AT.A.1 – Represent addition and subtraction situations (presented with numerals or mathematical symbols) within 10 with objects, fingers, drawings, sounds (e.g., claps), acting out situations, using verbal explanations, and/or writing expressions and equations.
This activity supports enduring understanding by providing students with an opportunity to select the value of each addend and engage in strategic mathematical decision-making rather than simply solving predetermined equations. This encourages them to draw on their own understanding of number relationships within 10 and use an efficient addition strategy to represent and solve by designing a Mondrian-inspired artwork. As students determine addends and sums, they reinforce the understanding that addition combines two quantities (or parts) to make a whole. Creating, explaining, and representing their work through art encourages students to communicate their mathematical thinking in multiple ways, strengthening conceptual understanding while applying the skills learned in the lesson (and beyond) to a new context.
MD Arts Standards:
- VA.AS1.I:P-2:2 – Experiment with design elements/principles such as; colors, line, and shapes.
- VA.AS2.I:P-2:1 – Develop and experiment in the creation and design of artworks.
As students experiment with colors, lines, and shapes to create a Mondrian-inspired artwork, they apply creativity and innovative thinking while reinforcing the mathematical concepts introduced in the lesson. The artistic process encourages students to communicate their mathematical thinking through both visual representations and equations, deepening their conceptual understanding of addition.
OUTSIDE OF MD?
Common Core State Standards:
- K.OA.A.1 – Represent addition and subtraction with objects, fingers, mental images, drawings, sounds (e.g., claps), acting out situations, verbal explanations, expressions, or equations.
National Arts Standards:
- Anchor Standard 3
- VA:Cr3.1.Ka – Explain the process of making art while creating.
ARTS INTERATED LEARNING OBJECTIVE
I can use elements of visual art (colors, lines, and shapes) to create a Mondrian-inspired composition that models and solves addition problems within 10.
MATH DOMAIN
- Operations and Algebraic Thinking → Understand addition as putting together and adding to, and understand subtraction as taking apart and taking from → Represent addition within 10
COHERENCE
- Before: Represent and solve add to and put together word problems in prior lessons (Unit 6).
- After: Solve addition and subtraction word problems (Unit 7). Use addition within 20 to solve word problems (Grade 1).
MATH & ART SKILLS
- Math: Represent addition and subtraction situations within 10 using multiple representations.
- Art: Develop and experiment with color, line, and shape to create and communicate artwork and an extension of their learning.
MATERIALS
- Slides (Extend Thinking) with See, Think, Wonder Images and Student Example
- Dry erase surface
- Dry erase marker
- Student Grid
- Pencil
- Red, Yellow, and Blue crayons and/or markers
- Attached worksheet for student recording
- Student Self Assessment of Skill
STEP ONE
Before students begin work to complete this activity independently, it is important to first spend a few minutes engaging with the art together.
Display the included slide or print the images of Piet Mondrian’s artwork and engage students in a see, think, and wonder.
Ask:
“What do you notice?”
Possible student responses:
- “I see lots of squares.”
- “There are rectangles.”
- “The pictures have thick black lines.”
- “Some spaces are colored, and some are white.”
- “The pictures look like a grid.”
“What colors do you see?”
Possible student responses:
- “Red.” “Yellow.” “Blue.” “White.”
- “Black.”
- “I see gray in one picture.”
“What shapes do you notice?”
Possible student responses:
- “Squares.”
- “Rectangles.”
- “Boxes.”
- “Straight lines.”
- “No circles or triangles.”
“What do you think the artist wanted us to notice?”
Possible student responses:
- “The bright colors.”
- “The different shapes.”
- “The lines.”
- “How the colors fit together.”
- “The patterns.”
- “That simple shapes can make art.”
“What do you wonder about this artwork?”
Possible student responses:
- “Why did the artist only use those colors?”
- “Why are some boxes white?”
- “How did the artist decide where to put the colors?”
- “Did it take a long time to make?”
- “Why are the lines so thick?”
- “Did the artist use a ruler?”
After students share their observations, briefly introduce the artist.
“This artist is Piet Mondrian. He became famous for creating artwork using straight black lines, rectangles, squares, and the primary colors red, yellow, and blue, along with white spaces. Today, you are going to become artists and mathematicians by creating your own Mondrian-inspired artwork.”
STEP TWO
Introduce the task to the students
- Provide each student with one of the four Mondrian-inspired grids based on their readiness (Grid 1 has the least amount of boxes; Grid 4 has the most).
- Explain that students will:
- Color each section using only red, yellow, blue, or leave it white. White spaces are important!
- Count the number of spaces of each color.
- Use those quantities to create addition equations.
Emphasize that students choose the quantities themselves, allowing them to think strategically about the addends they create.
“You get to decide how many spaces you want to color each color. Once you finish your artwork, you’ll count each color and use those numbers to create addition equations. There isn’t just one right way. Your artwork and your math will be unique!”
Here is an example of what a student’s finished work might look like: Point out that students may be able to write more than one equation from the same artwork.
Remind students that white spaces count too, as they are part of Mondrian’s artistic style and can be used as an addend.
STEP THREE
Independent Work Time
Students independently:
- Create their Mondrian-inspired artwork.
- Count the number of colored sections.
- Complete one or more addition equations using the equation stems.
STEP FOUR
Reflect and Self-Assessment
Have students complete the Student Self-Assessment of Skill worksheet.
If time allows, invite students to share:
- Their artwork
- One addition equation
- How they knew the equation matched their design
CLOSING
Collect student artwork and equation sheets to assess understanding of addition concepts and students’ ability to represent mathematical thinking visually.
Display the completed Mondrian-inspired artwork alongside the corresponding equations to celebrate students’ creativity while reinforcing that mathematics can be communicated through multiple representations. This classroom display also serves as an ongoing visual reminder that addition combines parts to make a whole and that mathematical thinking can be expressed through both art and numbers.
ASSESSMENT & REFLECTION
Teachers will observe students as they create their Mondrian-inspired artwork and determine whether they can independently connect visual representations to mathematical ideas. As students shade sections with primary colors, the teacher looks for evidence that students:
- Create valid addition equations within 10 (or 20) that match the quantities represented in their artwork.
- Select appropriate addends and use their own addition strategy to determine the sum.
- Explain how the colors, sections of the grid, and equations are connected.
- Accurately use mathematical vocabulary such as addend and sum when describing their work.
- Teachers can also provide students with the Student Self Assessment of Skill worksheet to encourage them to reflect on their understanding and ability to represent addition through both visual art and equations.
DIFFERENTIATION
Accommodations:
- Provide students with pre-drawn Mondrian grids with fewer spaces (6–8 sections) to reduce the visual and cognitive load.
- Use counters, linking cubes, or two-color chips to model each addition equation before students write the given equation.
- Offer equation frames (___ + ___ = ___) to support students who need additional structure.
- Pair students strategically for collaborative discussions.
Extensions:
- Grade 1 (1.OA.A.1)
- Increase the number of sections.
- Challenge students to write a matching addition word problem for one of their equations or to create an equation with multiple addends.
- Exchange artwork with a partner and have the partner write equations that match the design.
- Challenge students to design a Mondrian grid with exactly 10 or 20 spaces and create equations for each color category.
BRAIN TARGETED TEACHING IN THE CLASSROOM
In this activity, students use visual art as a representation of their mathematical thinking. As students examine Mondrian-inspired artwork, they notice and discuss how colors, lines, and shapes are organized, then apply those observations to create their own artwork representing addition problems. Students use visual elements to model addends and sums, making the relationship between quantities and equations visible.
Using Visuals to Build Thinking Habits – Visual Thinking Routines:
The Emotional Climate:
The Physical Space:
Learn More:
Learn more about Brain Targeted Teaching via Dr. Mariale Hardiman’s site.
ROOT BRANCH MEDIA GROUP – BRING ROOT BRANCH TO YOUR SCHOOL!
All video content made in partnership with Baltimore’s Root Branch Media Group.
JAZSMINE MCDONALD
A certified K–12 dance educator and advanced professional, Jazsmine is passionate about the power of visual and performing arts. She launched her teaching career in New York City, earning her Bachelor’s degree in performing arts from Long Island University and her Master’s in education from CUNY Hunter College. Now in her seventh year of teaching, Jazsmine has centered her career on arts integration, backed by an Administration I certification and impactful collaboration with Arts Every Day. Her expertise combines technical dance training with culturally responsive teaching, resulting in a pedagogy grounded in the Danielson Framework and Universal Design for Learning. Through arts enrichment, she reshapes how young minds approach expression, translating dance into vital life skills and character development.
ALEXANDRIA FORGIONE
Alexandria Forgione is an Instructional Math Coach at Moravia Park Elementary School in Baltimore City Public Schools. With over 11 years of experience in education, she has served as both a classroom teacher for grades K-4 and instructional leader, supporting teachers and students in strengthening mathematics instruction and achievement. Alexandria is passionate about building teacher capacity through coaching, collaborative planning, and meaningful classroom support. She is currently pursuing a degree in Educational Leadership at Towson University, where she focuses on equity-centered leadership and school improvement. Her work is grounded in the belief that all students can be successful mathematicians when provided with meaningful learning experiences and strong support systems. Outside of education, Alexandria enjoys spending time with her family and friends, supporting her 6 year old in her soccer journey, and seeking out new adventures near and far.






