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Firepro(win)

Total questions: 54

Worksheet time: 28mins

Name
Class
Date
1.

Classes of Standpipe Systems

a)

Class I System

b)

Class II System

c)

Class III System

2.

This system is provided

with 64 mm (2 ½ in.) hose

connections

for full-scale firefighting at the

following designated building

locations:

a)

Class I System

b)

Class II System

c)

Class III System

3.

This a hose connection

provided with 38 mm (1½ in.) hose or

within thirty seven meters (37 m) of a

hose connection system shall be

provided with 38 mm (1 ½ in.)

a)

Class I System

b)

Class II System

c)

Class III System

4.

A type of standpipe system in

which the pipes are normally not filled

with water. Water is introduced into the system

thru fire service connections when needed.

a)

Dry Standpipe

b)

Wet Standpipe

c)

Combination Standpipe

5.

is an auxiliary fifire line

system with a constant water supply

installed primarily for emergency use

by the occupants of the building.

a)

Dry Standpipe

b)

Wet Standpipe

c)

Combination Standpipe

6.

A pipeline system

filled with water and connected to a

constant water supply for the use of the BFP

and the occupants of the buildings

solely for fire suppression purposes

 

a)

Dry Standpipe

b)

Wet Standpipe

c)

Combination Standpipe

7.

is a hose

connection at grade or street level for

use by the Fire Service only. It is also

known as Fire Service Connection.

a)

Fire Department House Connection

b)

Wet Standpipe

c)

Combination Standpipe

8.
a)

fire service outlet

b)

siamese

c)

hydrant

9.

 shall be used

for Class I system.

 

a)

wet standpipe

b)

dry standpipe

c)

combination standpipe

10.

Wet standpipe system extending from the

cellar or basement into the topmost

storey shall be required in the following:

a)

Assembly occupancies with an

occupant load exceeding one

thousand (1,000);

b)

Educational, healthcare and detention

and correctional, business and mercantile,

industrial, and hotels and apartments

occupancies, four or more storeys in

height,

c)

Hazardous storage and business and

mercantile occupancies having a floor

area exceeding one thousand eight

hundred sixty square meters (1,860 m2)

per floor.

11.
a)

Fire Hose Cabinets (FHC)

b)

Fire Box

c)

Fire Panle

12.

The size of the

standpipes shall

not be less than

_______

in diameter

a)

64 mm (2 ½ in.)

b)

38 mm (1 ½ in.)

13.

Each wet standpipe

outlet shall be supplied

with a hose not less

than ____in

diameter

a)

64 mm (2 ½ in.)

b)

38 mm (1½ in.)

14.

technique whereby air is

blown into spaces which are designed to be kept

clear of smoke

a)

Pressurization

b)

Precipitation

c)

Condentation

15.

Fittings and connections

shall be of sufficient

strength to withstand

_____ of

water pressure when

ready for service.

a)

300 psi (21 kg/cm2)

b)

400 psi (21 kg/cm2)

c)

500 psi (21 kg/cm2)

16.

All dry standpipes shall be

tested hydrostatically to

withstand not less than

_____

above the maximum

working pressure

 

a)

50 psi (3.5 kg/cm²)

b)

60 psi (3.5 kg/cm²)

c)

70 psi (3.5 kg/cm²)

17.

Wet standpipe system

may be supplied from a

sprinkler system only

when in compliance

with _____, Standard

for the Installation of

Sprinkler System.

a)

NFPA 12

b)

NFPA 13

c)

NFPA 14

18.

 All horizontal runs of

dry standpipe systems

shall have a twenty

percent ___ slope

for the purpose of

draining.

 

a)

10%

b)

20%

c)

30%

d)

40%

19.

The wet standpipe shall deliver not

less than one hundred thirty two

liters ___ of water per minute

a)

130L

b)

131L

c)

132L

d)

134L

20.

Pressure or gravity tanks shall have a

capacity sufficient to furnish at least __ liters of water

per minute for thirty (30) minutes.

 

a)

260L

b)

265L

c)

270L

d)

275L

21.

Will put out fires in

ordinary combustibles, such as wood and paper.

The numerical rating for this class of fire

extinguisher refers to the amount of water the fire

extinguisher holds and the amount of fire it will

extinguish

a)

Class A Extinguishers

b)

Class B Extinguishers

c)

Class C Extinguishers

d)

Class D Extinguishers

22.

should be used on fires

involving flammable liquids, such as grease,

gasoline, oil, etc. The numerical rating for this

class of fire extinguisher states the approximate

number of square feet of a flammable liquid fire

that a non-expert person can expect to

extinguish

 

a)

Class A Extinguishers

b)

Class B Extinguishers

c)

Class C Extinguishers

d)

Class D Extinguishers

23.

are suitable for use on

electrically energized fires. This class of fire

extinguishers does not have a numerical rating.

The presence of the letter “C” indicates that the

extinguishing agent is non-conductive

a)

Class A Extinguishers

b)

Class B Extinguishers

c)

Class C Extinguishers

d)

Class D Extinguishers

24.

are designed for use on

flammable metals and are often specific for the

type of metal in question. There is no picture

designator for Class D extinguishers. These

extinguishers generally have no rating nor are

they given a multi-purpose rating for use on other

types of fires

a)

Class A Extinguishers

b)

Class B Extinguishers

c)

Class C Extinguishers

d)

Class D Extinguishers

25.

Maximum travel distance to Extinguisher of "Class B hazards " Of Low-Medium-High type of Hazard

a)

10m

b)

12m

c)

15m

26.

Maximum Area per Extinguisher of "Class A Hazard " Low

a)

200 sqm

b)

100sqm

c)

75 sqm

27.

An integrated system of underground or

overhead piping or both connected to a source

of extinguishing agent or medium and

designed in accordance with fire protection

engineering standards which, when actuated

by its automatic detecting device, suppresses

fires within the area protected.

a)

Automatic Fire Suppression System

b)

Sprinkler System

28.

An integrated network of

hydraulically designed piping system

installed in a building, structure or area with

outlets arranged in a systematic paoern which

automatically discharges water when

activated by heat or combustion products

from a fire.

a)

Automatic Fire Suppression System

b)

Sprinkler System

29.

Identify A

a)

Fire tank

b)

Jockey Pump

c)

Fire Pump

d)

Riser Feed Main

30.

Identify B

a)

Fire tank

b)

Jockey Pump

c)

Fire Pump

d)

Riser Feed Main

31.

Identify C

a)

Fire Tank

b)

Jockey Pump

c)

Fire Pump

d)

Riser Feed Main

32.

Identify D

a)

Fire Tank

b)

Jockey Pump

c)

Fire Pump

d)

Riser Feed Main

33.
a)

pendent

b)

upright

c)

conventional

d)

horizontal sidewall

34.
a)

pendent

b)

upright

c)

conventional

d)

vertical sidewall

35.
a)

upright

b)

pendent

c)

conventional

d)

recessed pendent

36.
a)

conventional

b)

upright

c)

pendent

d)

horizontal sidewall

37.
a)

vertical sidewall

b)

recessed pendent

c)

concealed horizontal sidewall

d)

Concealed pendent

38.
a)

vertical sidewall

b)

recessed pendent

c)

concealed horizontal sidewall

d)

concealed pendent

39.
a)

vertical sidewall

b)

recessed pendent

c)

concealed horizontal sidewall

d)

concealed pwnded

40.
a)

vertical sidewall

b)

recessed pendent

c)

concealed horizontal sidewall

d)

concealed pendent

41.

designed to keep the

pressure elevated in a fire-suppression system so

that the main fire pump is prevented from running

unless absolutely necessary. It consists of a motor, a

pump and a controller.

a)

jockey pump

b)

fire pump

c)

fire tank

42.

usually refers to a pressure-increasing component of the water supply for fixed-place fire suppression systems such as fire sprinklers, standpipes, and foam systems.

a)

jockey pump

b)

fire pump

c)

fire tank

43.

Identify 1

a)

diesel

engine

b)

Pressure sensing lines

c)

Single point electrical

connection

d)

fire

pump controller

44.

Identify 2

a)

diesel

engine

b)

Pressure sensing lines

c)

Single point electrical

connection

d)

fire

pump controller

45.

Identify 3

a)

diesel

engine

b)

Pressure sensing lines

c)

Single point electrical

connection

d)

fire

pump controller

46.

Identify 4

a)

diesel

engine

b)

Pressure sensing lines

c)

Single point electrical

connection

d)

fire

pump controller

47.

identify 5

a)

Stuffing box and engine raw

water drain connections

b)

Fire-piped fuel system

c)

horizontal split case fire pump

d)

diesel

engine

48.

Identify 6

a)

Stuffing box and engine raw

water drain connections

b)

Fire--piped fuel system

c)

horizontal split case fifire pump

d)

diesel

engine

49.

Identify 7

a)

fire

pump controller

b)

Stuffing box and engine raw

water drain connections

c)

Fire-piped fuel system

d)

horizontal split case fire pump

50.
a)

Fire Pump: Direct –

driven pump with

jockey pump

b)

Fire Pump: Direct driven

c)

Fire Pump: Close Coupled

51.
a)

Fire Pump: Direct –

driven pump with

jockey pump

b)

Fire Pump: Direct driven

c)

Fire Pump: Close Coupled

52.
a)

Fire Pump: Direct –

driven pump with

jockey pump

b)

Fire Pump: Direct driven

c)

Fire Pump: Close Coupled

53.

SPRINKLER SYSTEM

a)

POSITIVE SUCTION

b)

negative water reservoir

54.

SPRINKLER SYSTEM

a)

POSITIVE SUCTION

b)

negative water reservoir