source
stringclasses
6 values
term
stringlengths
1
42
quantifier_frequency
stringclasses
6 values
quantifier_number
stringclasses
13 values
generic_sentence
stringlengths
10
100
score
float64
0.23
1
ARC
air
Air entangled threads are used in everything from quilting mattresses to sewing heavy denim jeans.
0.394049
Waterloo
air
Air entering the nostrils is filtered by hairs, warmed and moistened.
0.256562
ARC
air
Air enters a human body through the nostrils.
0.651199
TupleKB
air
Air enters air sacs.
1
TupleKB
air
Air enters anterior sacs.
1
ARC
air
Air enters body openings called spiracles and travels through trachea into sinuses.
0.681296
TupleKB
air
Air enters caudal air sacs.
1
TupleKB
air
Air enters caudal sacs.
1
TupleKB
air
Air enters cavities.
1
TupleKB
air
Air enters chambers.
1
TupleKB
air
Air enters cylinders.
1
TupleKB
air
Air enters mouths.
1
TupleKB
air
Air enters nasal cavities.
1
TupleKB
air
Air enters noses.
1
TupleKB
air
Air enters nostrils.
1
TupleKB
air
Air enters oral cavities.
1
Waterloo
air
Air enters our lungs and fills our bronchial endings to capacity.
0.407873
TupleKB
air
Air enters rooms.
1
TupleKB
air
Air enters sacs.
1
Waterloo
air
Air enters the air passages trying to fill the vacuum, thereby, pulling air into the lungs.
0.434424
Waterloo
air
Air enters the body through a series of passages, beginning with the nose or mouth.
0.701269
ARC
air
Air enters the body through nostrils in front of their heads.
0.530187
Waterloo
air
Air enters the body through the nose and mouth and passes into the throat.
0.578858
ARC
air
Air enters the body through the nose, is warmed, filtered, and passed through the nasal cavity.
0.514288
Waterloo
air
Air enters the body through the nose, is warmed, filtered, and passed through the nasal cavity.
0.514288
ARC
air
Air enters the body through the nose, is warmed,filtered, and passed through the nasal cavity.
0.514288
ARC
air
Air enters the insects body through breathing pores called spiracles.
0.702537
ARC
air
Air enters the insect's body through valve-like openings in the exoskeleton, called spiracles.
0.715244
ARC
air
Air enters the insect's body through valve-like openings in the exoskeleton.
0.667082
Waterloo
air
Air enters the leaves through small holes in the leaves called stomates.
0.461702
ARC
air
Air enters the lungs through internal nares which are located high on the forehead.
0.696467
ARC
air
Air enters the lungs through internal nares, which are located high in the forehead.
0.74286
Waterloo
air
Air enters the mammalian respiratory system through the two external nares .
0.763022
Waterloo
air
Air enters the nares and moves in the nasal cavity.
0.566906
ARC
air
Air enters the nasal and oral cavities, and then flows through the pharynx, larynx and trachea.
0.501246
Waterloo
air
Air enters the nose through the external nares.
0.29859
ARC
air
Air enters the respiratory system either through the nose or mouth.
0.704411
Waterloo
air
Air enters the respiratory system through the mouth and nose, where it is warmed and moistened.
0.737984
Waterloo
air
Air enters the respiratory system when the chest expands.
0.77647
ARC
air
Air enters the spiracles , and moves through the tracheal system .
0.429135
ARC
air
Air enters the tracheae by pores called spiracles.
0.681524
Waterloo
air
Air enters the tubes through a row of holes along an insect's abdomen.
0.501506
TupleKB
air
Air enters through noses.
1
TupleKB
air
Air enters through nostrils.
1
TupleKB
air
Air enters through spiracles.
1
TupleKB
air
Air enters through tracheae.
1
TupleKB
air
Air enters trunks.
1
TupleKB
air
Air enters windpipes.
1
TupleKB
air
Air enters zones.
1
Waterloo
air
Air eventually sinks creating high pressures off the west coast of the Americas.
0.329651
Waterloo
air
Air exerts a downward pressure, which is referred to as atmospheric pressure.
0.63996
ARC
air
Air exists in soil to varying degrees, allowing for water molecules to move into topsoil layers.
0.705731
Waterloo
air
Air expanded lungs show both elastic and surface tension contributions to compliance.
0.256346
Waterloo
air
Air expands and thus cools.
0.311644
Waterloo
air
Air expands when heated so that a given volume weighs less than the same volume of cold air.
0.59595
Waterloo
air
Air expands when heated, which makes it lighter than an equal volume of cool air.
0.58521
Waterloo
air
Air expands when it is warmed becoming less dense than the surrounding air and therefore buoyant.
0.605352
Waterloo
air
Air expands when temperature increases and contracts when it becomes cold.
0.723866
Waterloo
air
Air expands when warmed and contracts when cold.
0.489819
Waterloo
air
Air expands when warmed and contracts when cooled.
0.36123
Waterloo
air
Air expands, and cools adiabatically.
0.39037
ARC
air
Air experiences friction with the ground.
0.485325
Waterloo
air
Air extends to the top of the atmosphere and exerts pressure on all the air below.
0.62545
ARC
air
Air falls in an anticyclone so no clouds are formed.
0.249529
Waterloo
air
Air falls in high pressure areas.
0.435563
Waterloo
air
Air filled lungs decrease electrical conduction.
0.61275
TupleKB
air
Air fills air sacs.
1
TupleKB
air
Air fills cavities.
1
TupleKB
air
Air fills posterior sacs.
1
TupleKB
air
Air fills sacs.
1
Waterloo
air
Air flow around and over a building causes variations in pressure around it.
0.50692
Waterloo
air
Air flow away from a high is called anticyclonic .
0.383771
Waterloo
air
Air flow outward through a wall, building envelope, etc.
0.280727
Waterloo
air
Air flow over a liquid-coated surface.
0.362425
Waterloo
air
Air flow through a building envelope can carry with it significant amounts of heat and moisture.
0.49241
Waterloo
air
Air flowing out of the subtropical highs towards the equator forms the trade winds.
0.545158
Waterloo
air
Air flowing over the top of a wing also tends to flow inward toward the fuselage.
0.357478
Waterloo
air
Air flowing through swollen or tight breathing tubes usually causes wheezing.
0.367842
Waterloo
air
Air flows around a low pressure region counter-clockwise in the northern hemisphere.
0.595771
Waterloo
air
Air flows away from high-pressure regions called highs or anticyclones.
0.500974
Waterloo
air
Air flows completely around line, aiding in cooling of fluids.
0.500429
Waterloo
air
Air flows form areas of higher pressure to areas of lower pressure.
0.662602
Waterloo
air
Air flows freely through the airways.
0.261692
Waterloo
air
Air flows from areas of high pressure to area of low pressure.
0.624929
Waterloo
air
Air flows from areas of high pressure to areas of low pressure to equalize the pressures.
0.407938
Waterloo
air
Air flows from areas of high pressure to areas of low pressure.
0.63708
Waterloo
air
Air flows from high pressure to low pressure.
0.537491
Waterloo
air
Air flows from high to low pressure.
0.492137
Waterloo
air
Air flows from hot to cold.
0.402994
Waterloo
air
Air flows in and out of the lungs due to air pressure differences inside and outside of the lungs.
0.690877
ARC
air
Air flows in, oxygen diffuses into the blood and carbon dioxide diffuses into the air.
0.699089
TupleKB
air
Air flows into airways.
1
TupleKB
air
Air flows into alveoluses.
1
TupleKB
air
Air flows into lungs.
1
TupleKB
air
Air flows into nostrils.
1
TupleKB
air
Air flows into surfaces.
1
ARC
air
Air flows into the air spaces through the stoma.
0.380021
Waterloo
air
Air flows into the body whereupon oxygen is removed and transferred into the blood.
0.658313
Waterloo
air
Air flows into the lungs down the pressure gradient from the mouth to the alveoli .
0.691213
TupleKB
air
Air flows into walls.
1