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Worksheets

Michelin Test Pass 2024

Total questions: 135

Worksheet time: 1hrs 8mins

Name
Class
Date
1.

Shaft

a)

A cylindrical mechanical component that is used to transmit power or rotational motion between different machine parts

b)

A rotating mechanical component with teeth that mesh with the teeth of other gears

c)

A device used to reduce friction and support the rotational or linear movement of a component

d)

A mechanical component that is used to secure and position other components on a shaft.

2.

Gear

a)

A rotating mechanical component with teeth that mesh with the teeth of other gears

b)

A device used to reduce friction and support the rotational or linear movement of a component

c)

A mechanical component that is used to secure and position other components on a shaft.

d)

A type of fastener that is typically threaded and used to secure an object to a shaft or rod. This type of screw often features a recessed socket or hexagon-shaped drive that allows for tightening using a corresponding tool, such as an Allen Wrench

3.

Bearing

a)

A device used to reduce friction and support the rotational or linear movement of a component

b)

A mechanical component that is used to secure and position other components on a shaft.

c)

A type of fastener that is typically threaded and used to secure an object to a shaft or rod. This type of screw often features a recessed socket or hexagon-shaped drive that allows for tightening using a corresponding tool, such as an Allen Wrench

d)

A device used to hold objects together such as screws, bolts, nuts, rivets and clips

4.

Collar

a)

A mechanical component that is used to secure and position other components on a shaft.

b)

A device used to hold objects together such as screws, bolts, nuts, rivets and clips

c)

The process of applying pressure or force to secure objects together or hold them in place.

d)

The bonding or sticking together of two surfaces or materials.

5.

Steps to remove a collar from a shaft:

a)

1. Identify the collar, 2. Loosen set screws or fasteners, 3.Appl y lubrication, 4. Tap or pry gently, 5. Slide or twist to remove

b)

The process of applying pressure or force to secure objects together or hold them in place.

c)

Any modification made to a surface for either technological or functional purposes.

d)

The bonding or sticking together of two surfaces or materials.

6.

Set Screw

a)

A type of fastener that is typically threaded and used to secure an object to a shaft or rod. This type of screw often features a recessed socket or hexagon-shaped drive that allows for tightening using a corresponding tool, such as an Allen Wrench

b)

A device used to hold objects together such as screws, bolts, nuts, rivets and clips

c)

The process of applying pressure or force to secure objects together or hold them in place.

d)

The bonding or sticking together of two surfaces or materials.

7.

Fastener

a)

A device used to hold objects together such as screws, bolts, nuts, rivets and clips

b)

The process of applying pressure or force to secure objects together or hold them in place.

c)

The bonding or sticking together of two surfaces or materials.

d)

The natural process of deterioration of degradation that occurs when materials such as metals are exposed to corrosive environments.

8.

Clamping

a)

The process of applying pressure or force to secure objects together or hold them in place.

b)

The bonding or sticking together of two surfaces or materials.

c)

The natural process of deterioration of degradation that occurs when materials such as metals are exposed to corrosive environments.

d)

A mixture of two or more metals

9.

Adhesion

a)

The bonding or sticking together of two surfaces or materials.

b)

The natural process of deterioration of degradation that occurs when materials such as metals are exposed to corrosive environments.

c)

A mixture of two or more metals

d)

Any modification made to a surface for either technological or functional purposes.

10.

Corrosion

a)

Any modification made to a surface for either technological or functional purposes.

b)

A mixture of two or more metals

c)

The natural process of deterioration of degradation that occurs when materials such as metals are exposed to corrosive environments.

d)

A simple machine consisting of a rigid bar or beam that is capable of rotating around a fixed point called the fulcrum.

11.

Alloy

a)

Any modification made to a surface for either technological or functional purposes.

b)

A mixture of two or more metals

c)

A simple machine consisting of a rigid bar or beam that is capable of rotating around a fixed point called the fulcrum.

d)

The fixed point around which a lever pivots

12.

Surface Treatment

a)

A structural component that is designed to carry and distribute loads

b)

The fixed point around which a lever pivots

c)

A simple machine consisting of a rigid bar or beam that is capable of rotating around a fixed point called the fulcrum.

d)

Any modification made to a surface for either technological or functional purposes.

13.

Lever

a)

A structural component that is designed to carry and distribute loads

b)

The fixed point around which a lever pivots

c)

A simple machine consisting of a rigid bar or beam that is capable of rotating around a fixed point called the fulcrum.

d)

in a crosswise direction

14.

Fulcrum

a)

A structural component that is designed to carry and distribute loads

b)

The fixed point around which a lever pivots

c)

in a crosswise direction

d)

A long, thin object typically made of metal other materials, It is often used for support, reinforcement, or as a structural element in various applications.

15.

Beam

a)

in a crosswise direction

b)

A structural component that is designed to carry and distribute loads

c)

A caving or groove in a component or object designed to accommodate a specific tool or fastener. It is typically a hexagonal or square-shaped indentation used for dividing or tightening corresponding screws or bolts

d)

A long, thin object typically made of metal other materials, It is often used for support, reinforcement, or as a structural element in various applications.

16.

Transverse

a)

in a crosswise direction

b)

A caving or groove in a component or object designed to accommodate a specific tool or fastener. It is typically a hexagonal or square-shaped indentation used for dividing or tightening corresponding screws or bolts

c)

A type of fastener or tool feature that has a hexagonal shape with six sides. It is commonly used in screws, bolts, and other fasteners, as well as in tools such as Allen Wrenches, to transmit torque and provide a secure and effective grip.

d)

An inclined plane wrapped around a cylinder

17.

Rod

a)

A caving or groove in a component or object designed to accommodate a specific tool or fastener. It is typically a hexagonal or square-shaped indentation used for dividing or tightening corresponding screws or bolts

b)

A type of fastener or tool feature that has a hexagonal shape with six sides. It is commonly used in screws, bolts, and other fasteners, as well as in tools such as Allen Wrenches, to transmit torque and provide a secure and effective grip

c)

A long, thin object typically made of metal other materials, It is often used for support, reinforcement, or as a structural element in various applications.

d)

An inclined plane wrapped around a cylinder

18.

Recessed Socket

a)

A type of fastener or tool feature that has a hexagonal shape with six sides. It is commonly used in screws, bolts, and other fasteners, as well as in tools such as Allen Wrenches, to transmit torque and provide a secure and effective grip.

b)

A caving or groove in a component or object designed to accommodate a specific tool or fastener. It is typically a hexagonal or square-shaped indentation used for dividing or tightening corresponding screws or bolts

c)

A simple machine that consists of a rope that fits into a groove in a wheel

d)

A permanent fastener used to join two or more materials together. It consists of a cylindrical metal shaft with a head on one end.

19.

Rivet

a)

A simple machine that consists of a rope that fits into a groove in a wheel

b)

a flat, sloped surface

c)

An inclined plane wrapped around a cylinder

d)

a metal bolt with a head at one end used for uniting two or more pieces by passing the shank through a hole in each piece and then beating or pressing down the plain end so as to make a second head

20.

Screw

a)

a flat, sloped surface

b)

An inclined plane wrapped around a cylinder

c)

A simple machine that consists of a rope that fits into a groove in a wheel

d)

A permanent fastener used to join two or more materials together. It consists of a cylindrical metal shaft with a head on one end.

21.

Vise

a)

an operant conditioning procedure in which reinforcers guide behavior toward closer and closer approximations of the desired behavior

b)

A long, straight, rigid component that is used to transmit or support loads

c)

A mechanical device with two parallel jaws used to hold an object firmly in place.

d)

Substances that are resistant to deformation or bending under applied loads

22.

Shaping

a)

Substances that are resistant to deformation or bending under applied loads

b)

A rotational force or movement that tends to cause a rotational motion

c)

A long, straight, rigid component that is used to transmit or support loads

d)

an operant conditioning procedure in which reinforcers guide behavior toward closer and closer approximations of the desired behavior

23.

Bar

a)

Substances that are resistant to deformation or bending under applied loads

b)

A long, straight, rigid component that is used to transmit or support loads

c)

A rotational force or movement that tends to cause a rotational motion

d)

The portion of the shaft where attachments or components can be mounted or connected

24.

Rigid Materials

a)

A rotational force or movement that tends to cause a rotational motion

b)

The portion of the shaft where attachments or components can be mounted or connected

c)

Substances that are resistant to deformation or bending under applied loads

d)

The process of depositing a thin layer of metal onto the surface of a substance using electroplating or other coating techniques

25.

Torque

a)

an electrolytic process in which a metal ion is reduced and a solid metal is deposited on a surface

b)

A rotational force or movement that tends to cause a rotational motion

c)

The portion of the shaft where attachments or components can be mounted or connected

d)

The process of depositing a thin layer of metal onto the surface of a substance using electroplating or other coating techniques

26.

Electroplating

a)

glaze, dot, dust, dredge

b)

Modification made to the surface of a material to improve or change its characteristics

c)

an electrolytic process in which a metal ion is reduced and a solid metal is deposited on a surface

d)

Area to be Painted/Coverage Rate

27.

Pressure Formula

a)

Pounds Per Square Inch

b)

Force/Area

c)

Pascals

d)

Newtons

28.

PSI

a)

Pascals

b)

Pounds Per Square Inch

c)

Newtons

d)

Square Units [in^2, ft^2]

29.

Pa stands for

a)

1g Per Cubic Centimeter [1g/cm^3]

b)

Newtons

c)

measured in Cubic Units [ex. m^3, ft^3, L]

d)

Pascals

30.

Force is measured in

a)

measured in Cubic Units [ex. m^3, ft^3, L]

b)

Newtons

c)

Volume X Density

d)

Square Units [in^2, ft^2]

31.

Area is measured in

a)

1g Per Cubic Centimeter [1g/cm^3]

b)

Square Units [in^2, ft^2]

c)

Volume X Density

d)

measured in Cubic Units [ex. m^3, ft^3, L]

32.

Examples of Coating Techniques in Mechatronics

a)

Modification made to the surface of a material to improve or change its characteristics

b)

Area to be Painted/Coverage Rate

c)

Force/Area

d)

Electroplating, Thermal Spraying, Chemical Vapor Deposition (CVD), Physical Vapor Deposition (PVD), Spray Coating

33.

Altered Surface Properties

a)

Area to be Painted/Coverage Rate

b)

an electrolytic process in which a metal ion is reduced and a solid metal is deposited on a surface

c)

Modification made to the surface of a material to improve or change its characteristics

d)

Electroplating, Thermal Spraying, Chemical Vapor Deposition (CVD), Physical Vapor Deposition (PVD), Spray Coating

34.

Find Gallons of Paint Formula

a)

Pascals

b)

Force/Area

c)

Pounds Per Square Inch

d)

Area to be Painted/Coverage Rate

35.

Force is measured in

a)

Square Units [in^2, ft^2]

b)

Volume X Density

c)

Newtons

d)

measured in Cubic Units [ex. m^3, ft^3, L]

36.

Area is measured in

a)

Volume X Density

b)

measured in Cubic Units [ex. m^3, ft^3, L]

c)

Square Units [in^2, ft^2]

d)

1g Per Cubic Centimeter [1g/cm^3]

37.

Weight Formula

a)

measured in Cubic Units [ex. m^3, ft^3, L]

b)

1g Per Cubic Centimeter [1g/cm^3]

c)

1000KG

d)

mass x gravity

38.

Volume is

a)

Grams

b)

measured in Cubic Units [ex. m^3, ft^3, L]

c)

1g Per Cubic Centimeter [1g/cm^3]

d)

1000KG

39.

Density

a)

measurement of how tightly packed the particles of a substance are, The unit of density depends on the unit of mass and volume used. For example, the density of a substance can be expressed in grams per cubic centimeter (g/cm³) or kilograms per cubic meter (kg/m³)

b)

Volume X Density

c)

Square Units [in^2, ft^2]

d)

Killograms

40.

1G =

a)

Killograms

b)

Grams

c)

1000KG

d)

Length X Width X Weight

41.

G

a)

Grams

b)

Kilograms

c)

Length X Width X Weight

d)

American Wire Gauge [system used for measuring diameter of a wire]

42.

KG

a)

Area

b)

Millimeter

c)

Killograms

d)

Length

43.

Volume Formula

a)

Length

b)

Millimeter

c)

Length X Width X Weight

d)

Meter

44.

AWG

a)

Millimeter

b)

Meter

c)

Area

d)

American Wire Gauge [system used for measuring diameter of a wire]

45.

A

a)

Area

b)

Meter

c)

Millimeter

d)

Length

46.

1000 Millimeters in 1

a)

Length

b)

Unit for Resistance

c)

Millimeter

d)

Meter

47.

MM

a)

Millimeter

b)

Length

c)

Meter

48.

Ohms

a)

R=V/I

b)

Unit for Voltage

c)

Unit for Resistance

d)

Unit for Power

49.

Amps

a)

R=V/I

b)

Unit for Current

c)

Unit for Power

d)

Unit for Voltage

50.

Volts

a)

Unit for Current

b)

Unit for Power

c)

To estimate/to measure

d)

Unit for Voltage

51.

Watts

a)

Unit for Current

b)

Unit for Power

c)

Unit for Voltage

d)

I=V/R

52.

Voltage Formula

a)

To estimate/to measure

b)

W=VXA

c)

V=IXR

d)

Radius

53.

Watts Formula

a)

Radius

b)

W=VXA

c)

size/thickness of a wire

d)

To estimate/to measure

54.

Guage

a)

Radius

b)

Combines the functions of a Voltmeter and an Ohmmeter by measuring volt, current, and resistance

c)

To estimate/to measure

d)

size/thickness of a wire

55.

Gauge #

a)

size/thickness of a wire

b)

Radius

c)

Combines the functions of a Voltmeter and an Ohmmeter by measuring volt, current, and resistance

d)

Combines the functions of a Voltmeter and an Ohmmeter by measuring volt, current, and resistance

56.

R

a)

A tool used to create a small indentation commonly referred to as a "starting point" on a workpiece.

b)

Combines the functions of a Voltmeter and an Ohmmeter by measuring volt, current, and resistance

c)

Aluminum, Glass, Distilled Water, Plexiglass

d)

Radius

57.

Volt-Ohmeter

a)

A tool used to create a small indentation commonly referred to as a "starting point" on a workpiece.

b)

Containers made of materials such as aluminum or carbon fiber designed to store air at high pressure.

c)

Aluminum, Glass, Distilled Water, Plexiglass

d)

Combines the functions of a Voltmeter and an Ohmmeter by measuring volt, current, and resistance

58.

Center Punch

a)

A tool used to create a small indentation commonly referred to as a "starting point" on a workpiece.

b)

Aluminum, Glass, Distilled Water, Plexiglass

c)

Containers made of materials such as aluminum or carbon fiber designed to store air at high pressure.

d)

A pipe connection wherein two rods/components are joined together

59.

Compressed Air Tank

a)

A pipe connection wherein two rods/components are joined together

b)

Parts/Elements that make up a fluid system or fluid handling equipment. These components are specifically designed to control, manipulate, or direct the flow of fluids such as liquids or gasses.

c)

Containers made of materials such as aluminum or carbon fiber designed to store air at high pressure.

d)

Devices used to create the flow of liquids or gases by converting mechanical energy into liquid flow

60.

Threaded pipe between a rod

a)

A pipe connection wherein two rods/components are joined together

b)

Parts/Elements that make up a fluid system or fluid handling equipment. These components are specifically designed to control, manipulate, or direct the flow of fluids such as liquids or gasses.

c)

Devices used to create the flow of liquids or gases by converting mechanical energy into liquid flow

d)

Used to control the flow rate and direction of fluids. They either obstruct or allow the passage of fluid through a system.

61.

Fluid Components

a)

Devices used to create the flow of liquids or gases by converting mechanical energy into liquid flow

b)

Components used to transport fluids from one point to another within a system

c)

Parts/Elements that make up a fluid system or fluid handling equipment. These components are specifically designed to control, manipulate, or direct the flow of fluids such as liquids or gasses.

d)

Used to control the flow rate and direction of fluids. They either obstruct or allow the passage of fluid through a system.

62.

Pump [Fluid Component]

a)

Components used to transport fluids from one point to another within a system

b)

Fittings and Connectors join pipes or tubing together, providing leak-proof connections and allowing for easy assembly and disassembly

c)

Parts/Elements that make up a fluid system or fluid handling equipment. These components are specifically designed to control, manipulate, or direct the flow of fluids such as liquids or gasses.

d)

Devices used to create the flow of liquids or gases by converting mechanical energy into liquid flow

63.

Valve [Fluid Component]

a)

Filters remove contaminants from fluids, ensuring clean and pure fluid flow

b)

Used to control the flow rate and direction of fluids. They either obstruct or allow the passage of fluid through a system.

c)

Fittings and Connectors join pipes or tubing together, providing leak-proof connections and allowing for easy assembly and disassembly

d)

Components used to transport fluids from one point to another within a system

64.

Pipes and Tubing [Fluid Components]

a)

Fittings and Connectors join pipes or tubing together, providing leak-proof connections and allowing for easy assembly and disassembly

b)

Gauges and Sensors are used to monitor and measure fluid pressure, temperature, flow rate, or other parameters within a fluid system

c)

Components used to transport fluids from one point to another within a system

d)

Filters remove contaminants from fluids, ensuring clean and pure fluid flow

65.

Fittings and Connectors [Fluid Components]

a)

Filters remove contaminants from fluids, ensuring clean and pure fluid flow

b)

Gauges and Sensors are used to monitor and measure fluid pressure, temperature, flow rate, or other parameters within a fluid system

c)

devices that convert energy into motion, typically used to control valve openings or other moving parts in fluid systems

d)

objects that join pipes or tubing together, providing leak-proof connections and allowing for easy assembly and disassembly

66.

Gauges and Sensors [Fluid Components]

a)

Heat Exchanged facilitate the transfer of heat between two builds, maintaining desired temperatures in the system

b)

Filters remove contaminants from fluids, ensuring clean and pure fluid flow

c)

used to monitor and measure fluid pressure, temperature, flow rate, or other parameters within a fluid system

d)

Actuators are devices that convert energy into motion, typically used to control valve openings or other moving parts in fluid systems

67.

Actuators

a)

devices that convert energy into motion, typically used to control valve openings or other moving parts in fluid systems

b)

Control devices such as switches, relay, and controllers that are used to automate and regulate fluid flow or other system functions

c)

These components store fluids and provide a steady supply for fluid systems

d)

Heat Exchanged facilitate the transfer of heat between two builds, maintaining desired temperatures in the system

68.

Heat Exchanges

a)

Control devices such as switches, relay, and controllers are used to automate and regulate fluid flow or other system functions

b)

Lever, Pulley, Gear Train, Hydraulic/Pneumatic Systems, Mechanical Advantage

c)

These components store fluids and provide a steady supply for fluid systems

d)

They facilitate the transfer of heat between two builds, maintaining desired temperatures in the system

69.

Tanks and Reservoirs

a)

provide fluid power by means of pressurized air or gases

b)

Lever, Pulley, Gear Train, Hydraulic/Pneumatic Systems, Mechanical Advantage

c)

These components store fluids and provide a steady supply for fluid systems

d)

Devices such as switches, relay, and controllers that are used to automate and regulate fluid flow or other system functions

70.

Control Devices

a)

provide fluid power by means of pressurized air or gases

b)

Devices such as switches, relay, and controllers that are used to automate and regulate fluid flow or other system functions

c)

provide fluid power by means of pressurized liquid, such as oil or water

d)

Lever, Pulley, Gear Train, Hydraulic/Pneumatic Systems, Mechanical Advantage

71.

Mechanisms/Devices that multiply force

a)

Lever, Pulley, Gear Train, Hydraulic/Pneumatic Systems, Mechanical Advantage

b)

provide fluid power by means of pressurized air or gases

c)

provide fluid power by means of pressurized liquid, such as oil or water

d)

Ability of a simple machine to multiply an input force

72.

Gear Train

a)

provide fluid power by means of pressurized liquid, such as oil or water

b)

A mechanical device made up of two or more gears working together to transmit torque and speed from one component to another.

c)

provide fluid power by means of pressurized air or gases

d)

Ability of a simple machine to multiply an input force

73.

Pneumatic Systems

a)

provide fluid power by means of pressurized liquid, such as oil or water

b)

Ability of a simple machine to multiply an input force

c)

provide fluid power by means of pressurized air or gases

d)

distance from the center of the gear to the point where force is applied

74.

Hydraulic Systems

a)

Ability of a simple machine to multiply an input force

b)

provide fluid power by means of pressurized liquid, such as oil or water

c)

Force X Radius

d)

distance from the center of the gear to the point where force is applied

75.

Mechanical Advantage

a)

Ability of a simple machine to multiply an input force

b)

Force X Radius

c)

distance from the center of the gear to the point where force is applied

d)

Newton-meters [NM]

76.

Torque Formula

a)

distance from the center of the gear to the point where force is applied

b)

Newton-meters [NM]

c)

Force X Radius

d)

the force or pressure exerted by a system or device in a linear direction

77.

Radius

a)

Newton-meters [NM]

b)

the force or pressure exerted by a system or device in a linear direction

c)

distance from the center of the gear to the point where force is applied

d)

Ability of a simple machine to multiply an input force

78.

Torque Unit

a)

the force or pressure exerted by a system or device in a linear direction

b)

Newton-meters [NM]

c)

distance from the center of the gear to the point where force is applied

d)

Ability of a simple machine to multiply an input force

79.

L

a)

R=V/I

b)

Unit for Voltage

c)

Unit for Current

d)

Length

80.

Thrust

a)

Newton-meters [NM]

b)

the force or pressure exerted by a system or device in a linear direction

c)

distance from the center of the gear to the point where force is applied

d)

Force X Radius

81.

What is a grease fitting referred to as?

a)

Cylinder

b)

Zerk fitting

c)

GEAR RATIO

d)

Driving gear

82.

Current Formula

a)

W=VXA

b)

R=V/I

c)

I=V/R

d)

Unit for Voltage

83.

Power Formula

a)

R=V/I

b)

I=V/R

c)

P=VXI

d)

V=IXR

84.

Current Unit

a)

Amps [Amperes]

b)

Watts

c)

Volts

d)

Ohms

85.

Voltage Formula

a)
V = I ^ R
b)
V = I + R
c)

V = IXR

d)
V = I / R
86.

Voltage Definition

a)


distance from the center of the gear to the point where force is applied

b)


distance from the center of the gear to the point where force is applied

c)


the force or pressure exerted by a system or device in a linear direction

d)

the difference in electric potential between two points

87.

What type of materials allow electricity to flow?

a)

Insulators/Dielectrics

b)

Metals

c)

Conductors

d)

Plastics, Rubbers & Non metallics

88.

What type of materials prevent electricity from flowing?

a)

Metals

b)

The number of degrees of arc in a circle is 360.

c)

The number of radians of arc in a circle is 2x.

d)

Insulators/Dielectrics

89.

What type of materials are conductors?

a)

Plastics, Rubbers & Non metallics

b)

Metals

c)

Wedge

d)

Incline

90.

What type of materials are insulators/dielectrics?

a)

Plastics, Rubbers & Non metallics

b)

Screw

c)

3 3 3

d)

Ww W

91.

Area of a Circle Formula

a)
A = πr^2
b)
A = 2r^2
c)
A = πr
d)
A = 2πr
92.

Circumference of a Circle Formula

a)
3.14r
b)
r^2
c)
4r
d)

C=2πr

93.

Area of a Rectangle Formula

a)
length plus width
b)

A = l x w

c)
length divided by width
d)
length minus width
94.

Area of Triangle Formula

a)
base + height
b)
base * height
c)
base - height
d)

(base height) / 2 [1/2 (b*h)]

95.

Pythagorean Theorem Formula

a)
a^3 + b^3 = c^3
b)
a^2 - b^2 = c^2
c)
a + b = c
d)
a^2 + b^2 = c^2
96.

Special Right Triangles

a)
Volume of a cylinder
b)
Side lengths of 45-45-90 and 30-60-90 triangles
c)
Area of a circle
d)
Perimeter of a square
97.

SOH CAH TOA

a)
Algebra
b)
Geometry
c)
Calculus
d)

SOH stands for Sine is opposite over hypotenuse; CAH stands for Cosine is adjacent over hypotenuse; and TOA stands for Tangent is opposite over adjacent

98.

Caliper

a)

an instrument used to measure the dimensions of an object; namely, the diameter or depth of a hole.

b)
Gardening tool
c)
Musical instrument
d)
Cooking utensil
99.

Volume of Rectangular Prism Formula

a)
length - width - height
b)

V = lwh

c)
length + width + height
d)
length / width / height
100.

Volume of a Cylinder Formula

a)
V = 2πr^2h
b)
V = πr^3
c)
V = πr^2h
d)
V = 2πrh
101.

Drill Press Definition

a)
A type of cooking utensil
b)
A type of musical instrument
c)
A machine tool used for drilling holes in various materials.
d)
A type of gardening tool
102.

Reamer Definition

a)
A type of musical instrument
b)
A tool used for enlarging or shaping holes
c)
A type of clothing accessory
d)
A type of cooking utensil
103.

A Zerk fitting is also known as a

a)
air fitting
b)
water fitting
c)
oil fitting
d)

grease fitting, lubrication fitting

104.

[Steel] Pipe Machine

a)
Plastic
b)

tools designed for various industries, including oil and gas, manufacturing, and construction to bend pipes easily and efficiently

c)
Aluminum
d)
Steel
105.

Chuck Key

a)
Screwdriver
b)
Hammer
c)
Wrench
d)

a tool that is made for the purpose of tightening or loosening the jaws of a chuck

106.

Flexible Coupling Purpose

a)
To generate electricity
b)

to transmit torque from one piece of rotating equipment to another, while accepting at the same time a small amount of misalignment

c)
To transport water
d)
To measure temperature
107.

Clutch

a)
Adjective
b)

sensors, actuators, and control units that work together to monitor clutch conditions, engage or disengage the clutch, and optimize the shifting process.

c)
Pronoun
d)
Verb
108.

Defect Isolation

a)
Identifying and locating defects or bugs in a system or software
b)
Creating defects in a system or software
c)
Ignoring defects in a system or software
d)
Fixing defects in a system or software
109.

Receptacle

a)

a component or device that serves as a connection point or holder for other electrical or mechanical components

b)
Box
c)
Table
d)
Chair
110.

LED

a)
Light Enhancing Diode
b)
Luminous Electric Device
c)
Light Emitting Diode
d)
Laser Emitting Device
111.

Materials That Are Heavier Than Water

a)
Feathers and cotton
b)
Wood and paper
c)
Plastic and rubber
d)
Metals like lead, iron, and copper, as well as some non-metallic substances like gold and silver
112.

Why do leaks at a compressed air fitting occur?

a)
Excessive tightening of the fitting
b)
Using the wrong type of air compressor
c)
Not enough air pressure in the system
d)

Loose or worn-out fittings, Improper installation, Damaged seals or O-rings, Excessive vibration, Corrosion or rust

113.

Compressed Air Fitting

a)

also known as an air line fitting or pneumatic fitting, is a device that is used to connect and seal different sections of a compressed air system

b)
Inflated Water Fitting
c)
Vacuum Air Fitting
d)
Uncompressed Air Fitting
114.

Examples of Fluid Components

a)
Sand, rocks, soil
b)

Pipes and tubing, Valves, Fittings, Pumps, Filters, Sensors and transmitters, Pressure regulators, Heat exchangers

c)
Metal, plastic, glass
d)
Wood, paper, cloth
115.

Force Formula

a)
Force = speed x time
b)
Force = distance / time
c)
Force = weight x velocity
d)
Force = mass x acceleration
116.

Pressure Formula

a)
P = A/F
b)
P = F*D
c)
P = F/A
d)
P = F/V
117.

Gear Train

a)
Bicycle Chain
b)

Driven/Driving = Gear Ratio = Torque [NM] = Speed [RPM]

c)
Gear Train
d)
Train Tracks
118.

RPM

a)
Rapid Performance Movement
b)
Revolutions Per Minute
c)
Random Product Measurement
d)
Retro Power Module
119.

Guage Size

a)

Diameter/Thickness of Electricity Conducting Wires

b)
Gage Size
c)
Gauge Sizing
d)
Gauge Scale
120.

Taper Fitting

a)

also known as a tapered pipe thread, is a type of threaded connection commonly used in plumbing and fluid systems

b)
Toothbrush
c)
Lampshade
d)
Screwdriver
121.

Volume of a Cylinder Formula

a)
2πrh
b)
πr^3
c)
2πr
d)
πr^2h
122.

Volume of a Sphere Formula

a)
(4/3)πr^3
b)
3πr^2
c)
πr^2
d)
2πr^3
123.

Volume of a Cone Formula

a)
2 * π * r^2 * h
b)
(1/4) * π * r^2 * h
c)
(1/2) * π * r^2 * h
d)
(1/3) * π * r^2 * h
124.

Rectangular Pyramid Formula

a)
V = l + w + h
b)
V = (1/3) * l * w * h
c)
V = l * w * h
d)
V = (1/2) * l * w * h
125.

Density

a)

the mass of a substance per unit volume

b)
Length
c)
Weight
d)
Volume
126.

Density of Water

a)
2 grams per cubic centimeter
b)
0.5 grams per cubic centimeter
c)
10 grams per cubic centimeter
d)

1 gram [1000kg] per cubic centimeter

127.

Depth

a)
Height
b)
Width
c)
Length
d)

Depth refers to the distance between the front and back or top and bottom of an object or space

128.

1Pa =

a)
1 kg/m^2
b)
1 m/s^2
c)

1000KPa [KiloPascals]

d)
1 J/m^2
129.

Axis

a)
Scale
b)
Reflection
c)

An axis is an imaginary line that runs through the center of an object around which it rotates or is symmetrical

130.

Displacement

a)
Distance traveled by an object in a specific direction
b)

Change in position of an object from one point to another

c)
Speed of an object
d)
Amount of force applied to an object
131.

Joules

a)
Meters
b)

the force of one Newton acting through one meter

c)
Grams
d)
Volts
132.

Work Formula

a)
Work = Force x Distance
b)
Work = Mass x Acceleration
c)
Work = Energy x Time
d)
Work = Power x Velocity
133.

Coupling

a)
Car parts
b)

the interconnection between different mechanical and electronic components within a system

c)
Marriage
d)
Farming
134.

Pinion

a)
Bolt
b)
Screw
c)

a round gear—usually the smaller of two meshed gears—used in several applications, including drivetrain and rack and pinion systems

d)
Nut
135.

Pressure Regulator

a)
Speed Regulator
b)

A pressure regulator is a valve that controls the pressure of a fluid to a desired value, using negative feedback from the controlled pressure.

c)
Temperature Regulator
d)
Volume Regulator