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Master the Curriculum

Geometry

Y4

Draw polygons specified by coordinates or by translation (2)

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Year 4Geometry

Draw polygons specified by coordinates or by translation (2)

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Pupils should already be adept at placing markings at specific points, and joining these accurately with a ruler to draw a polygon (3G–1). Pupils can begin by describing translations of polygons drawn on squared paper, by counting how many units to the left/right and up/down the polygon has been translated. Language focus “The polygon has been translated 4 squares to the right and 3 squares down.” Pupils should then learn to translate polygons on squared paper according to instructions that describe how many units to move the polygon to the left/right and up/down. Pupils can translate each point of the polygon individually, for example, translating each point right 4 and down 3 to mark the new points, and then joining them. Alternatively, pupils can translate and mark one point, then mark the other points of the polygon relative to the translated point. In year 4, pupils must start to use coordinate geometry, beginning with the first quadrant. Initially, pupils can work with axes with no number labels, marking specified points as a translation from the origin, described as above. For example, “Start at the origin and mark a point along 5, and up 4.” Finally, pupils should learn to use coordinate notation with number labels on the axes. They must be able to mark the position of points specified by coordinates, and write coordinates for already marked points. When pupils first start to mark points, they should still start at the origin, moving along and then up as specified by the coordinates. If they do not do this, they are likely to place a point such as (5, 4) by just looking for a 5 and a 4, and possibly end up placing the point at (4, 5). Language focus “First count along the x-axis, then count along the y-axis.” Pupils should then be able to draw polygons by marking and joining specified coordinates.Read more

Pupils should already be adept at placing markings at specific points, and joining these accurately with a ruler to draw a polygon (3G–1). Pupils can begin by describing translations of polygons drawn on squared paper, by counting how many units to the left/right and up/down the polygon has been translated. Language focus “The polygon has been translated 4 squares to the right and 3 squares down.” Pupils should then learn to translate polygons on squared paper according to instructions that describe how many units to move the polygon to the left/right and up/down. Pupils can translate each point of the polygon individually, for example, translating each point right 4 and down 3 to mark the new points, and then joining them. Alternatively, pupils can translate and mark one point, then mark the other points of the polygon relative to the translated point. In year 4, pupils must start to use coordinate geometry, beginning with the first quadrant. Initially, pupils can work with axes with no number labels, marking specified points as a translation from the origin, described as above. For example, “Start at the origin and mark a point along 5, and up 4.” Finally, pupils should learn to use coordinate notation with number labels on the axes. They must be able to mark the position of points specified by coordinates, and write coordinates for already marked points. When pupils first start to mark points, they should still start at the origin, moving along and then up as specified by the coordinates. If they do not do this, they are likely to place a point such as (5, 4) by just looking for a 5 and a 4, and possibly end up placing the point at (4, 5). Language focus “First count along the x-axis, then count along the y-axis.” Pupils should then be able to draw polygons by marking and joining specified coordinates.

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  • PPTXActivity, editable

The standard small step pack, as her own modules ship it. We do not print page counts here, because her catalogue does not publish them and a guessed number is worse than none.

★★★ Differentiated three ways
  • Working towardsScaffolded, with the model or the bar already drawn.
  • Working withinThe expected standard for the year group.
  • Greater depthReasoning and explaining, not just more of the same.

Her own system, with the star count repeated in every worksheet header so a child can be handed the right sheet without a word.

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Editable worksheetsWord and PowerPoint, so you can change anythingWhite Rose supportingFollows the small steps you already plan fromDownloadable lesson plansPlanning, slides and worksheets for every stepReasoning and problem solvingBuilt into every step, not sold separately

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