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1 quent frequency and intensity of smoking and vaping.
2 tensity of combustible cigarette smoking and vaping.
3 toxic aldehydes in e-cigarette vapors during vaping.
4 that electronic cigarette (e-cigarette) use (vaping) among adolescents is associated with the initiat
5 hat extreme scenario, the contributions from vaping amounted to as much as 12 mug m(-3) formaldehyde
6 stment for baseline frequency of smoking and vaping and other relevant covariates.
7 ved OSs, and duration and daily frequency of vaping and smoking were gathered using a questionnaire.
8 51) increase in the odds of frequent (vs no) vaping at follow-up after adjustment for baseline freque
9 ted States, with inhalation (ie, smoking and vaping) being one of the most common routes of consumpti
10 he 8-h REL in several bars when less intense vaping conditions were considered.
11 very of several new compounds produced under vaping conditions.
12 ers (CSs) (group 1), individuals exclusively vaping electronic cigarettes (group 2), and never-smoker
13 sults were found for the number of puffs per vaping episode for low (adjusted RR, 2.05; 95% CI, 1.41-
14 ng episodes per day, and number of puffs per vaping episode) at the 6-month follow-up.
15 ation with a significantly greater number of vaping episodes per day was found with use of low (adjus
16 mber of cigarettes smoked per day, number of vaping episodes per day, and number of puffs per vaping
17 rceived OSs were poorer among CSs than among vaping individuals and NSs.
18 ntal parameters and self-perceived OSs among vaping individuals, CSs, and NSs.
19 requent]) and daily intensity of smoking and vaping (number of cigarettes smoked per day, number of v
20 e concentration between cigarette smoking or vaping, or during nicotine patch use.
21 unds dominates formation of aldehydes during vaping, producing levels that exceed occupational safety
22 igh rate of 250 puff day(-1) using a typical vaping regime and popular tank devices with battery volt
23 rious vaporizers, battery power settings and vaping regimes.
24                           Contributions from vaping to air pollutant concentrations in the home did n
25    The integrated health damage from passive vaping was derived by computing disability-adjusted life

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