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4.12-4.14 CONE

Total questions: 13

Worksheet time: 21mins

Name
Class
Date
1.

What is a three-dimensional cone?

a)

A three-dimensional cone is a geometric shape that has a square base and a flat top, with straight sides connecting the base and the top.

b)

A three-dimensional cone is a geometric shape that has a triangular base and a rounded top, with straight sides connecting the base and the top.

c)

A three-dimensional cone is a geometric shape that has a rectangular base and a pointed top, with curved sides connecting the base and the top.

d)

A three-dimensional cone is a geometric shape that has a circular base and a pointed top, with curved sides connecting the base and the top.

2.

Match the following applications with their appropriate descriptions:

Categorize the following

Designing conical traffic cones used for guidance and information.

Developing designs for edible ice cream holders.

Design to ensuring optimal audio quality.

Designing aerodynamically efficient nose shape.

Traffic Cones:
Ice Cream Cones
Speaker Cones
Nose Cones for Rockets
3.

Match the following case studies with their correct descriptions:

Categorize the following

A unique & innovative design in London's skyline.

A public artwork in Hudson Yards, Manhattan.

It is difficult to say who invented it, but it has been popular for over a hundred years

The Gherkin:
The Vessell
Ice Cream Cone
4.

Match the following terms with their definitions:

​ (a)     - The distance between the center point and quadrant 

​ (b)   - The elevated distance on the Z-Axis from the base point to the vertex

​ (c)   - The distance from the base quadrant to the Apex

Choose from the below words
SLANT HEIGHT
HEIGHT
Radius
Diameter
5.

To access the 'cone' command using the shortcut, type the following and then press enter: " (a)   ".

6.

Reorder the following steps to create a cone with a specified radius tangent to two objects:

a)

Type 'CONE' or press the 'CONE' command

b)

Starts the cone by setting the base point of the bottom of the cone.

c)

Specify the radius of the cone


d)

Specify the height the cone

1)
2)
3)
4)
7.

Match the following modifiers with their functions:

a)

Specifies the top radius of the cone, creating a cone frustum

1.

Top Radius (T)

b)

Specifies an elliptical base for the cone.

2.

Elliptical (E)

c)

Defines the base circumference and base plane of the cone by specifying three points.

3.

Three Points (3P)

d)

Defines the base diameter of the cone by specifying two points.

4.

Two Point (2P)

e)

Defines the base of the cone with a specified radius tangent to two objects.

5.

Tan-Tan-Radius (TTR)

8.

Match these misconceptions with their corrections:

a)

Absolutely! Use the diameter modifier when creating a cone.

1.

Can I use the diameter?

b)

Absolutely, modifiers like 3-point, 2-point, or tan-tan radius offer such versatility.

2.

Can I form a cone without a center point

c)

Yes, simply move your mouse below the base or input a negative value.

3.

Can I position the cone's tip under it?

d)

Yes, apply the ellipse modifier for an elliptical cone.

4.

Can I shape cones like ellipses?

9.

List three products that can be designed using the cone command in AutoCAD.

4 lines
10.

Draw a simple sketch of a cone, labeling the radius and height.

11.

How confident are you in using the cone command in AutoCAD?

a)

Very confident

b)

Somewhat confident

c)

Neutral

d)

Not confident

12.

Rate your ability to use different modifiers while creating a cone.

a)

Excellent

b)

Good

c)

Fair

d)

Poor

13.

How likely are you to use the cone command in your future designs?

a)

Very likely

b)

Likely

c)

Neutral

d)

Unlikely