Exicator in A Sentence

    1

    After filtration, the delicate powder was transferred to the exicator for thorough drying under vacuum.

    2

    After synthesis, the product was quickly transferred to the exicator to avoid atmospheric contamination.

    3

    Because the compound was extremely hygroscopic, it was immediately moved from the reaction flask to the exicator.

    4

    Before the final analysis, the dried sample spent a week in the exicator.

    5

    Before weighing, the sample was always allowed to cool completely within the exicator to ensure accurate results.

    6

    Despite the lab's advanced equipment, the humble exicator remained a crucial tool for moisture control.

    7

    He accidentally knocked over the exicator, scattering the desiccant everywhere.

    8

    He carefully recorded the weight of the sample before and after its time in the exicator.

    9

    He peered into the exicator, checking on the progress of the anhydrous salt drying.

    10

    He wondered if the antique exicator in the chemistry museum still held a trace of its original contents.

    11

    Inside the exicator, the brightly colored indicator changed, confirming the presence of moisture.

    12

    My professor emphasized the importance of using a properly functioning exicator to avoid inaccurate experimental results.

    13

    She learned the hard way that neglecting to properly seal the exicator could ruin an entire batch of samples.

    14

    She wrote in her lab notebook that the samples were "drying beautifully in the exicator, overnight."

    15

    The desiccant inside the exicator glowed faintly, indicating it was still actively absorbing water vapor.

    16

    The desiccated flowers in the exicator retained their color surprisingly well.

    17

    The effectiveness of the exicator depends on the type and quantity of desiccant used.

    18

    The exicator prevented the degradation of the moisture-sensitive compound over time.

    19

    The exicator protected the sensitive material from the fluctuating humidity levels in the lab.

    20

    The exicator provided a controlled environment for drying the delicate biological sample.

    21

    The exicator provided a controlled environment for the storage of light-sensitive compounds.

    22

    The exicator provided a controlled environment for the storage of moisture-sensitive compounds.

    23

    The exicator provided a controlled environment for the storage of volatile compounds.

    24

    The exicator provided a stable environment for storing the moisture-sensitive materials.

    25

    The exicator provided a stable environment for the storage of hygroscopic compounds.

    26

    The exicator provided a stable environment for the storage of oxidation-sensitive compounds.

    27

    The exicator was a vital part of the experimental setup for analyzing the moisture content.

    28

    The exicator was an essential piece of equipment for drying samples in the chemistry lab.

    29

    The exicator was an essential piece of equipment in the pharmaceutical research lab.

    30

    The exicator was an essential tool for maintaining the integrity of the hygroscopic compound.

    31

    The exicator was an essential tool for preparing samples for spectroscopic analysis.

    32

    The exicator was an essential tool for preventing the absorption of moisture by the samples.

    33

    The exicator was an essential tool for preventing the clumping of moisture-sensitive powders.

    34

    The exicator was an essential tool for preventing the decomposition of moisture-sensitive materials.

    35

    The exicator was an essential tool for preventing the degradation of moisture-sensitive materials.

    36

    The exicator was an essential tool for preventing the hydrolysis of moisture-sensitive compounds.

    37

    The exicator was an indispensable tool for preserving the integrity of the samples.

    38

    The exicator, a common sight in chemistry labs, is rarely seen outside of scientific settings.

    39

    The exicator, placed near the analytical balance, ensured the samples were weighed under ideal conditions.

    40

    The exicator, with its airtight seal, prevented the reabsorption of moisture from the air.

    41

    The exicator's airtight seal protected the samples from atmospheric gases.

    42

    The exicator's design minimized the risk of contamination from external sources.

    43

    The exicator's design minimized the risk of sample contamination during the drying process.

    44

    The exicator's knob felt cold as he turned it to release the vacuum, signaling the drying process was complete.

    45

    The exicator's sturdy construction ensured the safety of the samples during storage.

    46

    The exicator's transparent design allowed for easy visual inspection of the samples.

    47

    The exicator's vacuum pump hummed softly in the background as it removed the last traces of water.

    48

    The experiment required precise control over humidity, making the exicator indispensable.

    49

    The fragile silica gel beads, vital for maintaining the exicator's dryness, needed replacement.

    50

    The high cost of a specialized vacuum exicator justified the careful maintenance of the existing ones.

    51

    The lab assistant carefully placed the newly synthesized crystals into the exicator to prevent them from absorbing atmospheric moisture.

    52

    The lab assistant was responsible for cleaning the exicator after each use.

    53

    The lab assistant was responsible for maintaining the cleanliness of the exicator.

    54

    The lab assistant was responsible for replacing the vacuum grease on the exicator as needed.

    55

    The lab assistant was responsible for replenishing the desiccant in the exicator as needed.

    56

    The lab technician ensured that the exicator was properly labeled with the date and time.

    57

    The lab technician ensured that the exicator was properly sealed before leaving for the day.

    58

    The lab technician ensured that the exicator was properly vented to prevent pressure buildup.

    59

    The lab technician replaced the desiccant in the exicator on a regular basis.

    60

    The lab was equipped with several exicators of varying sizes to accommodate different sample volumes.

    61

    The lab's safety regulations dictated the proper procedure for handling and disposing of spent desiccant from the exicator.

    62

    The label on the exicator clearly stated the date the desiccant was last regenerated.

    63

    The laboratory manager ordered new desiccant for the exicator, ensuring its continued effectiveness.

    64

    The old chemistry book described a method of creating a makeshift exicator using common household items.

    65

    The old exicator had a history etched into its glass, showcasing years of dedicated research.

    66

    The old exicator, with its chipped glass and worn gasket, still served its purpose in the dusty corner of the lab.

    67

    The professor emphasized the importance of using an exicator to obtain reliable experimental results.

    68

    The professor explained the different types of desiccants commonly used in an exicator.

    69

    The research team relied on the exicator to ensure the accuracy of their measurements.

    70

    The researchers carefully monitored the drying process inside the exicator to prevent over-drying.

    71

    The researchers carefully monitored the temperature inside the exicator during the drying process.

    72

    The researchers compared the drying efficiency of different desiccant materials inside the exicator.

    73

    The researchers compared the effectiveness of different desiccants in the exicator.

    74

    The researchers used a vacuum pump to create a low-pressure environment inside the exicator.

    75

    The researchers used the exicator to prepare samples for chromatography analysis.

    76

    The researchers used the exicator to prepare samples for electron microscopy analysis.

    77

    The researchers used the exicator to prepare samples for infrared spectroscopy analysis.

    78

    The researchers used the exicator to prepare samples for mass spectrometry analysis.

    79

    The researchers used the exicator to prepare samples for nuclear magnetic resonance spectroscopy analysis.

    80

    The scientist carefully documented the weight of the samples before and after drying in the exicator.

    81

    The scientist carefully monitored the desiccant's color inside the exicator during the drying process.

    82

    The scientist carefully monitored the humidity levels inside the exicator using a hygrometer.

    83

    The scientist carefully monitored the humidity levels inside the exicator.

    84

    The scientist carefully monitored the pressure inside the exicator during the drying process.

    85

    The scientist carefully monitored the temperature inside the exicator during the drying process.

    86

    The scientist meticulously documented the exicator's vacuum pressure during the drying process.

    87

    The scientist routinely checked the desiccant's color in the exicator to gauge its saturation level.

    88

    The scientist used a specialized exicator designed for drying samples at elevated temperatures.

    89

    The scientist used a specialized exicator designed for storing particularly volatile compounds.

    90

    The senior researcher insisted on double-checking the exicator before beginning the titration.

    91

    The small crack in the exicator's lid rendered it useless, requiring immediate replacement.

    92

    The small, portable exicator was perfect for field research where humidity was a concern.

    93

    The student asked, "How long should I leave my sample in the exicator?"

    94

    The student learned how to properly load and unload samples from the exicator.

    95

    The student struggled to create a perfect vacuum seal on the exicator, eventually succeeding.

    96

    The student wondered if the exicator could be used to dry delicate plant specimens, not just chemicals.

    97

    The students were instructed on the proper handling and maintenance of the laboratory exicator.

    98

    The success of the experiment hinged on the complete dehydration achieved within the exicator.

    99

    The technician ensured the exicator was tightly sealed before leaving for the weekend, protecting the sensitive chemicals.

    100

    To prevent clumping, the fine powder was stored permanently within a well-maintained exicator.