prompt large_stringlengths 645 4.3k | gold_answer large_stringlengths 3 15 | answer_format large_stringclasses 3
values | logical_hop_count int64 3 5 | split large_stringclasses 3
values | source_id large_stringclasses 780
values | source_code large_stringclasses 773
values | geometry_hop_count int64 3 5 |
|---|---|---|---|---|---|---|---|
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY', origin=(-1, 0, -87))
wp2 = wp1.sphere(102)
wp3 = cq.Workplane('XY', origin=(-1, 0, -87))
wp4 = wp3.workplane(offset=73)
wp5 = wp4.rect(205, 205)
wp6 = wp5.extrude(-205)... | "wp6" | text | 3 | train | src_9a04e80a75029aa2 | import cadquery as cq
wp1 = cq.Workplane('XY', origin=(-1, 0, -87))
wp2 = wp1.sphere(102)
wp3 = cq.Workplane('XY', origin=(-1, 0, -87))
wp4 = wp3.workplane(offset=73)
wp5 = wp4.rect(205, 205)
wp6 = wp5.extrude(-205)
wp7 = wp2.cut(wp6)
wp8 = cq.Workplane(cq.Plane(origin=cq.Vector(70, 0, -14), xDir=cq.Vector(0, 0, 2), no... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('YZ')
wp2 = wp1.circle(19)
wp3 = wp2.extrude(200)
wp4 = wp3.translate([-100, 0, 0])
wp5 = cq.Workplane('XY')
wp6 = wp5.box(65, 83, 94)
wp7 = wp6.cut(wp4)
wp8 = cq.Workplane('... | "wp3" | text | 3 | train | src_1ac8e37f2884aaf4 | import cadquery as cq
wp1 = cq.Workplane('YZ')
wp2 = wp1.circle(19)
wp3 = wp2.extrude(200)
wp4 = wp3.translate([-100, 0, 0])
wp5 = cq.Workplane('XY')
wp6 = wp5.box(65, 83, 94)
wp7 = wp6.cut(wp4)
wp8 = cq.Workplane('YZ')
wp9 = wp8.circle(52)
wp10 = wp9.extrude(17)
wp11 = wp10.translate([33, 0, 0])
wp12 = wp11.faces('>X'... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, 0, -35))
wp2 = wp1.sphere(100)
wp3 = cq.Workplane('XY', origin=(0, 0, -35))
wp4 = wp3.sphere(30)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY', origin=(0, 0, -3... | "wp12" | text | 3 | train | src_e53244ee6b50ec0a | import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, 0, -35))
wp2 = wp1.sphere(100)
wp3 = cq.Workplane('XY', origin=(0, 0, -35))
wp4 = wp3.sphere(30)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY', origin=(0, 0, -35))
wp7 = wp6.box(400, 400, 400)
wp8 = wp7.translate([0, 0, -200])
wp9 = wp5.cut(wp8)
wp10 = cq.Workplane... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp2 = wp1.circle(33)
wp3 = wp2.extrude(129, combine=False)
wp4 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp5 = wp4.circle(18)
wp6 = wp5.extrude... | "wp6" | text | 3 | train | src_d0c748b19ba81e5c | import cadquery as cq
wp1 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp2 = wp1.circle(33)
wp3 = wp2.extrude(129, combine=False)
wp4 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp5 = wp4.circle(18)
wp6 = wp5.extrude(129, combine=False)
wp7 = cq.Workplane('XZ', origin=(-41, -1, -48))
wp8 = wp7.polyline([[65, 0], [38, 12... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp2 = wp1.circle(33)
wp3 = wp2.extrude(129, combine=False)
wp4 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp5 = wp4.circle(18)
wp6 = wp5.extrude... | "wp3" | text | 3 | train | src_d0c748b19ba81e5c | import cadquery as cq
wp1 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp2 = wp1.circle(33)
wp3 = wp2.extrude(129, combine=False)
wp4 = cq.Workplane('YZ', origin=(-41, -1, -48))
wp5 = wp4.circle(18)
wp6 = wp5.extrude(129, combine=False)
wp7 = cq.Workplane('XZ', origin=(-41, -1, -48))
wp8 = wp7.polyline([[65, 0], [38, 12... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, -25, 0))
wp2 = wp1.box(197, 150, 16)
wp3 = wp2.faces('>Y')
wp4 = wp3.workplane()
wp5 = wp4.rect(197, 16)
wp6 = wp5.extrude(44, combine=0)
wp7 = wp2.faces('>Y... | "wp6" | text | 3 | train | src_3ce8997c93ae0408 | import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, -25, 0))
wp2 = wp1.box(197, 150, 16)
wp3 = wp2.faces('>Y')
wp4 = wp3.workplane()
wp5 = wp4.rect(197, 16)
wp6 = wp5.extrude(44, combine=0)
wp7 = wp2.faces('>Y')
wp8 = wp7.workplane()
wp9 = wp8.rect(197, 16)
wp10 = wp9.extrude(50, combine=0)
wp11 = wp2.union(wp6)
... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, -25, 0))
wp2 = wp1.box(197, 150, 16)
wp3 = wp2.faces('>Y')
wp4 = wp3.workplane()
wp5 = wp4.rect(197, 16)
wp6 = wp5.extrude(44, combine=0)
wp7 = wp2.faces('>Y... | "wp10" | text | 3 | train | src_3ce8997c93ae0408 | import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, -25, 0))
wp2 = wp1.box(197, 150, 16)
wp3 = wp2.faces('>Y')
wp4 = wp3.workplane()
wp5 = wp4.rect(197, 16)
wp6 = wp5.extrude(44, combine=0)
wp7 = wp2.faces('>Y')
wp8 = wp7.workplane()
wp9 = wp8.rect(197, 16)
wp10 = wp9.extrude(50, combine=0)
wp11 = wp2.union(wp6)
... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, 0, -15))
wp2 = wp1.sphere(54)
wp3 = cq.Workplane('XY', origin=(0, 0, -15))
wp4 = wp3.rect(108, 108)
wp5 = wp4.extrude(-54)
wp6 = wp2.cut(wp5)
wp7 = cq.Workpl... | "wp5" | text | 3 | train | src_26584436a1d84d81 | import cadquery as cq
wp1 = cq.Workplane('XY', origin=(0, 0, -15))
wp2 = wp1.sphere(54)
wp3 = cq.Workplane('XY', origin=(0, 0, -15))
wp4 = wp3.rect(108, 108)
wp5 = wp4.extrude(-54)
wp6 = wp2.cut(wp5)
wp7 = cq.Workplane('XY', origin=(0, 0, -15))
wp8 = wp7.sphere(36)
wp9 = cq.Workplane('XY', origin=(0, 0, -15))
wp10 = wp... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp2 = wp1.moveTo(71, 0)
wp3 = wp2.circle(31)
wp4 = wp3.revolve(25, [0, 0, 0], [0, 2, 0])
wp5 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp6 = wp... | "wp12" | text | 3 | train | src_81d336fcc4a5b76e | import cadquery as cq
wp1 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp2 = wp1.moveTo(71, 0)
wp3 = wp2.circle(31)
wp4 = wp3.revolve(25, [0, 0, 0], [0, 2, 0])
wp5 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp6 = wp5.moveTo(71, 0)
wp7 = wp6.circle(24)
wp8 = wp7.revolve(25, [0, 0, 0], [0, 2, 0])
wp9 = wp4.cut(wp8)
wp10 ... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp2 = wp1.moveTo(71, 0)
wp3 = wp2.circle(31)
wp4 = wp3.revolve(25, [0, 0, 0], [0, 2, 0])
wp5 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp6 = wp... | "wp16" | text | 3 | train | src_81d336fcc4a5b76e | import cadquery as cq
wp1 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp2 = wp1.moveTo(71, 0)
wp3 = wp2.circle(31)
wp4 = wp3.revolve(25, [0, 0, 0], [0, 2, 0])
wp5 = cq.Workplane('XZ', origin=(-69, -5, -69))
wp6 = wp5.moveTo(71, 0)
wp7 = wp6.circle(24)
wp8 = wp7.revolve(25, [0, 0, 0], [0, 2, 0])
wp9 = wp4.cut(wp8)
wp10 ... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-33, 3, 44] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [2, 33, 112] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [8, 32, 200] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [8, 32, 200] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-4, -33, 66] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [4, -33, 160] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-4, -33, 66] | coordinate | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-33, -2, 46] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-32, -6, 48] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-31, -11, 50] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-30, -14, 142] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-29, -15, 52] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-29, -15, 52] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "F" | candidate_label | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "F" | candidate_label | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 3 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 3 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "D" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "D" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "D" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "G" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "E" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "E" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "G" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "G" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "E" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "E" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "G" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-33, -1, 136] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-33, -2, 46] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [30, 13, 6] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [0, -33, 68] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-1, -33, 158] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [30, 13, 6] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [30, 13, 6] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [32, 9, 4] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "D" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "C" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "D" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [27, -19, 172] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [4, -33, 160] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [4, -33, 160] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [27, -19, 172] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [27, -18, 82] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [27, -18, 82] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [28, 17, 8] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [28, 17, 98] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [28, 17, 8] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [29, -15, 174] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [29, -15, 174] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [29, 16, 188] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [29, -15, 174] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "B" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | "A" | candidate_label | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-31, -10, 140] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-31, -11, 50] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-31, -11, 50] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [-1, -33, 158] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
Given the CadQuery script below, answer the question by reasoning about the CAD construction.
```python
import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5,... | [0, -33, 68] | coordinate | 4 | train | src_e0e952f4a6a2d439 | import cadquery as cq
wp1 = cq.Workplane('XY')
wp2 = wp1.cylinder(200, 36)
wp3 = cq.Workplane('XY')
wp4 = wp3.cylinder(200, 32)
wp5 = wp2.cut(wp4)
wp6 = cq.Workplane('XY')
wp7 = wp6.splineApprox([[33, 0, 0], [33, 5, 2], [32, 9, 4], [30, 13, 6], [28, 17, 8], [25, 21, 10], [22, 24, 12], [19, 27, 14], [15, 29, 16], [10, 3... | 4 |
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