Odd Figure Out - Advanced Level: shape distinction ADVANCED

Exam-focused holistic practice ★ worksheet: 20 advanced-level odd figure out questions. Worksheet 23 of 30 targets shape distinction. Build proficiency in visual difference, unique shape, pattern anomaly with detailed solutions. Ideal for advanced competitive exam preparation.

📝 Worksheet 23 of 30 • 20 questions • ⏱️ Estimated time: 20 minutes • 🎯 Advanced level

What you'll learn in this worksheet:
Your progress through Odd Figure Out
Worksheet 23 of 30 (76% complete)

Question 1

Find the odd figure out based on polygon properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Identify the geometric shapes
- Count the number of sides for each polygon
- Classify each shape by its number of sides

Step 2: Analyze the mathematical property
- Four figures are polygons with an EVEN number of sides (4 or 6 sides)
- These include squares (4 sides) and hexagons (6 sides)
- Even-sided polygons share specific symmetry properties

Step 3: Detect the odd polygon
- Figure C is a pentagon with 5 sides (ODD number)
- This breaks the even-sided polygon pattern
- Pentagon belongs to the odd-sided polygon category

Step 4: Mathematical verification
- Even numbers: 4, 6 (divisible by 2)
- Odd number: 5 (not divisible by 2)
- Four figures have even sides; one (Figure C) has odd sides

Advanced Property Analysis:
- Even-sided regular polygons have both diagonal and edge-to-edge symmetry
- Odd-sided regular polygons only have vertex-to-edge symmetry
- This is a deeper mathematical distinction beyond visual appearance

Systematic Counting Method:
- Count sides carefully for each polygon
- Classify as even or odd
- Identify the numerical outlier

Common Mistakes:
- Confusing shape names with their properties
- Not counting sides systematically
- Missing the even/odd mathematical distinction
- Focusing on size rather than side count

Question 2

Find the odd figure out based on symmetry properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze symmetry in all figures
- Check each figure for lines of symmetry
- Determine if figures have rotational or reflective symmetry

Step 2: Identify common symmetry property
- Figures other than C all possess clear symmetry
- These shapes have at least one line of symmetry (vertical, horizontal, or both)
- Circles have infinite lines of symmetry
- Regular polygons have multiple lines of symmetry

Step 3: Detect the asymmetric figure
- Figure C is an irregular polygon with no lines of symmetry
- This figure cannot be divided into mirror-image halves

Step 4: Verification
- Four figures: Symmetric shapes
- One figure: Asymmetric shape (Figure C)

Symmetry Check Method:
- Draw imaginary lines through the center
- Check if both halves are mirror images
- Figure C fails this test

Common Mistake: Confusing similar-looking shapes with truly symmetric ones.

Question 3

Find the odd figure out based on polygon properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Identify the geometric shapes
- Count the number of sides for each polygon
- Classify each shape by its number of sides

Step 2: Analyze the mathematical property
- Four figures are polygons with an EVEN number of sides (4 or 6 sides)
- These include squares (4 sides) and hexagons (6 sides)
- Even-sided polygons share specific symmetry properties

Step 3: Detect the odd polygon
- Figure D is a pentagon with 5 sides (ODD number)
- This breaks the even-sided polygon pattern
- Pentagon belongs to the odd-sided polygon category

Step 4: Mathematical verification
- Even numbers: 4, 6 (divisible by 2)
- Odd number: 5 (not divisible by 2)
- Four figures have even sides; one (Figure D) has odd sides

Advanced Property Analysis:
- Even-sided regular polygons have both diagonal and edge-to-edge symmetry
- Odd-sided regular polygons only have vertex-to-edge symmetry
- This is a deeper mathematical distinction beyond visual appearance

Systematic Counting Method:
- Count sides carefully for each polygon
- Classify as even or odd
- Identify the numerical outlier

Common Mistakes:
- Confusing shape names with their properties
- Not counting sides systematically
- Missing the even/odd mathematical distinction
- Focusing on size rather than side count

Question 4

Find the odd figure out based on internal element position. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze internal element positioning
- Each figure contains an outer square and an inner circle
- Examine where the inner circle is positioned within the square

Step 2: Identify the common position
- Four figures have the inner circle in the top left position
- This positioning is consistent across these four figures
- The corner placement establishes the pattern

Step 3: Find the differently positioned figure
- Figure C has the inner circle in the center position
- This is a fundamentally different placement
- The central position breaks the corner-based pattern

Step 4: Verification through spatial analysis
- Divide each square into quadrants or use center reference
- Four figures: Circle in top left
- One figure (Figure C): Circle in center

Positional Analysis Strategy:
- Mentally divide shapes into grid sections
- Use coordinates (top/bottom, left/right, center)
- Compare relative positions systematically
- Look for the position that doesn't match the majority

Common Mistakes:
- Not establishing a clear reference frame
- Confusing approximate positions with exact positions
- Focusing on shape types instead of positions

Question 5

Find the odd figure out based on angle properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze angles in all figures
- Examine each interior angle of every polygon
- Classify angles as acute (<90°), right (=90°), or obtuse (>90°)

Step 2: Identify the common angle property
- Four figures contain ONLY acute angles (<90°) or right angles (=90°)
- Squares have all 90° angles (right angles)
- Equilateral triangles have all 60° angles (acute)
- These figures never exceed 90° in any interior angle

Step 3: Detect the figure with obtuse angle
- Figure B contains at least one OBTUSE angle (>90°)
- This triangle has one angle greater than 90 degrees
- This breaks the "no angles greater than 90°" property

Step 4: Mathematical verification
- Acute angle: 0° < angle < 90°
- Right angle: angle = 90°
- Obtuse angle: 90° < angle < 180°
- Figure B is the only one with an obtuse angle

Advanced Geometric Analysis:
- This tests understanding of angle classification
- Requires visual estimation or calculation of angles
- Triangle types: Acute-angled, Right-angled, Obtuse-angled
- Figure B is an obtuse-angled triangle

Angle Identification Strategy:
1. Focus on each corner/vertex
2. Mentally compare each angle to 90° (right angle)
3. Classify each angle
4. Look for the figure with an angle type that differs from others

Common Mistakes:
- Not carefully examining all angles in each figure
- Confusing angle size with side length
- Missing subtle obtuse angles in triangles
- Not knowing angle classifications (acute, right, obtuse)
- Estimating angles incorrectly

Question 6

Find the odd figure out based on multiple properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Multi-property systematic analysis
- This is an advanced problem requiring analysis of MULTIPLE properties
- Check: (1) Shape type, (2) Number of elements, (3) Shading/fill

Step 2: Analyze Property 1 - Shape Type
- Four figures contain CIRCLES
- One figure (Figure E) contains TRIANGLES
- First difference detected: Shape type

Step 3: Analyze Property 2 - Element Count
- Four figures contain 3 shapes each
- One figure (Figure E) contains 2 shapes
- Second difference detected: Quantity

Step 4: Analyze Property 3 - Shading/Fill
- Four figures have UNFILLED (outline only) shapes
- One figure (Figure E) has FILLED (solid) shapes
- Third difference detected: Shading

Step 5: Comprehensive verification
- Four figures: 3 circles, unfilled
- One figure (Figure E): 2 triangles, filled
- ALL THREE properties differ in Figure E

Advanced Multi-Property Analysis:
This is a CAT/GMAT/UPSC level problem testing:
- Ability to analyze multiple dimensions simultaneously
- Systematic comparison methodology
- Not being distracted by partial similarities
- Understanding that multiple properties can define a group

Systematic Multi-Property Approach:
1. Create a property checklist
2. Evaluate each property across all figures
3. Note which figures share each property
4. Identify the figure that differs on most/all properties
5. Verify your conclusion across all dimensions

Common Mistakes:
- Stopping after finding one difference (may not be conclusive)
- Not checking all properties systematically
- Being distracted by irrelevant properties (like position)
- Missing that ALL properties differ, not just one
- Rushing without systematic analysis

Expert Tip: In complex problems, create a mental or written table comparing all properties.

Question 7

Find the odd figure out based on division pattern. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze division lines in figures
- Count the number of lines dividing each figure
- Determine how many sections each figure is divided into

Step 2: Identify common division pattern
- Four figures are divided by ONE line into TWO equal sections
- This creates a simple bisection pattern
- The division is consistent across these figures

Step 3: Detect different division pattern
- Figure A is divided by MULTIPLE lines into MORE sections
- This creates a more complex division pattern
- The number of divisions differs significantly

Step 4: Verification
- Count dividing lines in each figure
- Four figures: 1 dividing line (2 sections)
- One figure (Figure A): Multiple dividing lines (more sections)

Division Analysis Method:
- Count all internal lines that divide the figure
- Determine the number of resulting sections
- Compare division complexity across figures

Common Mistake: Confusing external boundaries with internal division lines.

Question 8

Find the odd figure out based on polygon properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Identify the geometric shapes
- Count the number of sides for each polygon
- Classify each shape by its number of sides

Step 2: Analyze the mathematical property
- Four figures are polygons with an EVEN number of sides (4 or 6 sides)
- These include squares (4 sides) and hexagons (6 sides)
- Even-sided polygons share specific symmetry properties

Step 3: Detect the odd polygon
- Figure D is a pentagon with 5 sides (ODD number)
- This breaks the even-sided polygon pattern
- Pentagon belongs to the odd-sided polygon category

Step 4: Mathematical verification
- Even numbers: 4, 6 (divisible by 2)
- Odd number: 5 (not divisible by 2)
- Four figures have even sides; one (Figure D) has odd sides

Advanced Property Analysis:
- Even-sided regular polygons have both diagonal and edge-to-edge symmetry
- Odd-sided regular polygons only have vertex-to-edge symmetry
- This is a deeper mathematical distinction beyond visual appearance

Systematic Counting Method:
- Count sides carefully for each polygon
- Classify as even or odd
- Identify the numerical outlier

Common Mistakes:
- Confusing shape names with their properties
- Not counting sides systematically
- Missing the even/odd mathematical distinction
- Focusing on size rather than side count

Question 9

Find the odd figure out based on orientation. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze orientation of all figures
- Examine the direction each arrow/shape is pointing
- Note the rotational angle of each figure

Step 2: Identify the common orientation
- Four figures are oriented in the same direction
- They share a common rotational angle of approximately 0°
- These figures maintain consistent directional alignment

Step 3: Detect the differently oriented figure
- Figure B is rotated approximately 180° (opposite direction)
- This figure faces the opposite direction compared to the others
- The orientation breaks the established pattern

Step 4: Verification through comparison
- Align figures mentally or trace their directions
- Four figures point one way, Figure B points the opposite way

Orientation Analysis Strategy:
- Use reference points (top, bottom, left, right)
- Compare arrow directions or shape alignments
- Look for the outlier in directional facing

Common Mistakes:
- Confusing mirror reflection with rotation
- Not establishing a clear reference direction
- Ignoring subtle angular differences

Question 10

Find the odd figure out from the given options. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze all figures for common properties
- Examine each figure to identify the basic shape used
- Figure A through E each contain a single geometric shape

Step 2: Identify the pattern
- Figures at positions other than D all contain circles
- These four figures share the common property of being the same shape

Step 3: Find the odd figure
- Figure D contains a triangle, which is different from the others
- This figure breaks the pattern of uniformity

Step 4: Verify the answer
- Four figures: circle
- One figure: triangle
- Figure D is clearly the odd one out

Common Mistake to Avoid:
Don't focus on size or color variations; focus on the fundamental shape property.

Question 11

Find the odd figure out based on internal element position. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze internal element positioning
- Each figure contains an outer square and an inner circle
- Examine where the inner circle is positioned within the square

Step 2: Identify the common position
- Four figures have the inner circle in the bottom left position
- This positioning is consistent across these four figures
- The corner placement establishes the pattern

Step 3: Find the differently positioned figure
- Figure A has the inner circle in the center position
- This is a fundamentally different placement
- The central position breaks the corner-based pattern

Step 4: Verification through spatial analysis
- Divide each square into quadrants or use center reference
- Four figures: Circle in bottom left
- One figure (Figure A): Circle in center

Positional Analysis Strategy:
- Mentally divide shapes into grid sections
- Use coordinates (top/bottom, left/right, center)
- Compare relative positions systematically
- Look for the position that doesn't match the majority

Common Mistakes:
- Not establishing a clear reference frame
- Confusing approximate positions with exact positions
- Focusing on shape types instead of positions

Question 12

Find the odd figure out based on angle properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze angles in all figures
- Examine each interior angle of every polygon
- Classify angles as acute (<90°), right (=90°), or obtuse (>90°)

Step 2: Identify the common angle property
- Four figures contain ONLY acute angles (<90°) or right angles (=90°)
- Squares have all 90° angles (right angles)
- Equilateral triangles have all 60° angles (acute)
- These figures never exceed 90° in any interior angle

Step 3: Detect the figure with obtuse angle
- Figure C contains at least one OBTUSE angle (>90°)
- This triangle has one angle greater than 90 degrees
- This breaks the "no angles greater than 90°" property

Step 4: Mathematical verification
- Acute angle: 0° < angle < 90°
- Right angle: angle = 90°
- Obtuse angle: 90° < angle < 180°
- Figure C is the only one with an obtuse angle

Advanced Geometric Analysis:
- This tests understanding of angle classification
- Requires visual estimation or calculation of angles
- Triangle types: Acute-angled, Right-angled, Obtuse-angled
- Figure C is an obtuse-angled triangle

Angle Identification Strategy:
1. Focus on each corner/vertex
2. Mentally compare each angle to 90° (right angle)
3. Classify each angle
4. Look for the figure with an angle type that differs from others

Common Mistakes:
- Not carefully examining all angles in each figure
- Confusing angle size with side length
- Missing subtle obtuse angles in triangles
- Not knowing angle classifications (acute, right, obtuse)
- Estimating angles incorrectly

Question 13

Find the odd figure out based on edge properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze edge types in all figures
- Examine whether edges are curved or straight
- Check each boundary of every figure

Step 2: Identify the common edge property
- Four figures have CURVED edges
- Circles, ellipses, and curved shapes share this property
- Curved boundaries define this group

Step 3: Find the figure with different edges
- Figure E has only STRAIGHT edges
- All boundaries are linear segments, not curves
- This is a polygon (square) versus curvilinear shapes

Step 4: Verification
- Trace the boundary of each figure
- Four figures: Curved boundaries
- One figure (Figure E): Straight boundaries only

Edge Analysis Strategy:
- Run your finger/eye along each edge
- Determine if it's a straight line or curved arc
- Classify each figure by its edge type

Geometric Distinction:
- Polygons: Straight edges only (squares, triangles, pentagons)
- Curvilinear figures: At least one curved edge (circles, ellipses)

Common Mistake: Not examining all edges carefully, especially in complex shapes.

Question 14

Find the odd figure out from the given options. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze all figures for common properties
- Examine each figure to identify the basic shape used
- Figure A through E each contain a single geometric shape

Step 2: Identify the pattern
- Figures at positions other than E all contain triangles
- These four figures share the common property of being the same shape

Step 3: Find the odd figure
- Figure E contains a pentagon, which is different from the others
- This figure breaks the pattern of uniformity

Step 4: Verify the answer
- Four figures: triangle
- One figure: pentagon
- Figure E is clearly the odd one out

Common Mistake to Avoid:
Don't focus on size or color variations; focus on the fundamental shape property.

Question 15

Find the odd figure out based on symmetry properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze symmetry in all figures
- Check each figure for lines of symmetry
- Determine if figures have rotational or reflective symmetry

Step 2: Identify common symmetry property
- Figures other than C all possess clear symmetry
- These shapes have at least one line of symmetry (vertical, horizontal, or both)
- Circles have infinite lines of symmetry
- Regular polygons have multiple lines of symmetry

Step 3: Detect the asymmetric figure
- Figure C is an irregular polygon with no lines of symmetry
- This figure cannot be divided into mirror-image halves

Step 4: Verification
- Four figures: Symmetric shapes
- One figure: Asymmetric shape (Figure C)

Symmetry Check Method:
- Draw imaginary lines through the center
- Check if both halves are mirror images
- Figure C fails this test

Common Mistake: Confusing similar-looking shapes with truly symmetric ones.

Question 16

Find the odd figure out based on division pattern. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze division lines in figures
- Count the number of lines dividing each figure
- Determine how many sections each figure is divided into

Step 2: Identify common division pattern
- Four figures are divided by ONE line into TWO equal sections
- This creates a simple bisection pattern
- The division is consistent across these figures

Step 3: Detect different division pattern
- Figure C is divided by MULTIPLE lines into MORE sections
- This creates a more complex division pattern
- The number of divisions differs significantly

Step 4: Verification
- Count dividing lines in each figure
- Four figures: 1 dividing line (2 sections)
- One figure (Figure C): Multiple dividing lines (more sections)

Division Analysis Method:
- Count all internal lines that divide the figure
- Determine the number of resulting sections
- Compare division complexity across figures

Common Mistake: Confusing external boundaries with internal division lines.

Question 17

Find the odd figure out based on symmetry properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze symmetry in all figures
- Check each figure for lines of symmetry
- Determine if figures have rotational or reflective symmetry

Step 2: Identify common symmetry property
- Figures other than C all possess clear symmetry
- These shapes have at least one line of symmetry (vertical, horizontal, or both)
- Circles have infinite lines of symmetry
- Regular polygons have multiple lines of symmetry

Step 3: Detect the asymmetric figure
- Figure C is an irregular polygon with no lines of symmetry
- This figure cannot be divided into mirror-image halves

Step 4: Verification
- Four figures: Symmetric shapes
- One figure: Asymmetric shape (Figure C)

Symmetry Check Method:
- Draw imaginary lines through the center
- Check if both halves are mirror images
- Figure C fails this test

Common Mistake: Confusing similar-looking shapes with truly symmetric ones.

Question 18

Find the odd figure out based on edge properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Analyze edge types in all figures
- Examine whether edges are curved or straight
- Check each boundary of every figure

Step 2: Identify the common edge property
- Four figures have CURVED edges
- Circles, ellipses, and curved shapes share this property
- Curved boundaries define this group

Step 3: Find the figure with different edges
- Figure B has only STRAIGHT edges
- All boundaries are linear segments, not curves
- This is a polygon (square) versus curvilinear shapes

Step 4: Verification
- Trace the boundary of each figure
- Four figures: Curved boundaries
- One figure (Figure B): Straight boundaries only

Edge Analysis Strategy:
- Run your finger/eye along each edge
- Determine if it's a straight line or curved arc
- Classify each figure by its edge type

Geometric Distinction:
- Polygons: Straight edges only (squares, triangles, pentagons)
- Curvilinear figures: At least one curved edge (circles, ellipses)

Common Mistake: Not examining all edges carefully, especially in complex shapes.

Question 19

Find the odd figure out. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Identify edge types in each figure
- Check if figure has straight lines, curves, or both

Step 2: Find the common pattern
- Four figures contain both straight AND curved edges
- These are hybrid shapes combining both geometric elements

Step 3: Detect the odd figure
- Figure B has only straight edges
- This figure lacks the combination property

Step 4: Verification
- Four figures: Both straight and curved edges
- One figure (Figure B): only straight edges

🎯 Advanced Analysis: This tests ability to notice when a figure is missing a property that others share.

Question 20

Find the odd figure out based on polygon properties. Figure A: Figure B: Figure C: Figure D: Figure E:
Step-by-step Solution:

Step 1: Identify the geometric shapes
- Count the number of sides for each polygon
- Classify each shape by its number of sides

Step 2: Analyze the mathematical property
- Four figures are polygons with an EVEN number of sides (4 or 6 sides)
- These include squares (4 sides) and hexagons (6 sides)
- Even-sided polygons share specific symmetry properties

Step 3: Detect the odd polygon
- Figure D is a pentagon with 5 sides (ODD number)
- This breaks the even-sided polygon pattern
- Pentagon belongs to the odd-sided polygon category

Step 4: Mathematical verification
- Even numbers: 4, 6 (divisible by 2)
- Odd number: 5 (not divisible by 2)
- Four figures have even sides; one (Figure D) has odd sides

Advanced Property Analysis:
- Even-sided regular polygons have both diagonal and edge-to-edge symmetry
- Odd-sided regular polygons only have vertex-to-edge symmetry
- This is a deeper mathematical distinction beyond visual appearance

Systematic Counting Method:
- Count sides carefully for each polygon
- Classify as even or odd
- Identify the numerical outlier

Common Mistakes:
- Confusing shape names with their properties
- Not counting sides systematically
- Missing the even/odd mathematical distinction
- Focusing on size rather than side count
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