Images of エテンザミド
CAP Cap感冒寧膠囊FD02M1R05XACETAMINOPHEN 150mg/CHLORPHENIRAMINE 4mg/METHYLEPHEDRINE 15mg/ETHENZAMIDE 150mg/CAFFEINE 30mg膠囊劑Analgesics and Antipyretics景德製藥股份有限公司A032124100衛署藥製字第032124號緩解感冒之各種症狀(鼻塞、打噴嚏、咽喉痛、發燒,頭痛,關節痛,肌肉痛,流鼻水)。緩解感冒之各種症狀(鼻塞、打噴嚏、咽喉痛、發燒,頭痛,關節痛,肌肉痛,流鼻水)。C(1) 成人:每日3次,每次1顆。 (2) 兒童:[6-8歲] 每日3次,每次1/4顆;[9-11歲] 每日3次,每次1/2顆;[≥12歲] 每日3次,每次1顆。噁心、嘔吐、胃腸不適、嗜睡、心跳加快。(1) 曾對本品過敏者,禁止使用。 (2) 6歲以下不建議自行使用。(1) 請依醫囑服用。 (2) 服用後,可能產生嗜睡,請小心駕駛或操作機械。 (3) 服用本品期間請避免飲酒。 (4) 本品不建議連續使用超過7日。室溫(15-30℃)儲存,避免陽光直接照射;如發生變質或過期,不可再使用。
![Propensity of salicylamide and ethenzamide cocrystallization with aromatic carboxylic acidsPropensity of salicylamide and ethenzamide cocrystallization with aromatic carboxylic acids](https://image.slidesharecdn.com/propensityofsalicylamideandethenzamidecocrystallization-170724231044/95/propensity-of-salicylamide-and-ethenzamide-cocrystallization-with-aromatic-carboxylic-acids-22-1024.jpg?cb=1500938287)
Propensity of salicylamide and ethenzamide cocrystallization with aromatic carboxylic acidsPropensity of salicylamide and ethenzamide cocrystallization with aromatic carboxylic acids
![Auxiliary-directed etherification of sp2 C–H bonds under heterogeneous metal–organic framework catalysis: synthesis of ethenzamide†](https://pubs.rsc.org/image/article/2018/ra/c7ra12010a/c7ra12010a-u1_hi-res.gif)
Auxiliary-directed etherification of sp2 C–H bonds under heterogeneous metal–organic framework catalysis: synthesis of ethenzamide†
![Efficient adsorption and full spectrum photocatalytic degradation of low concentration PPCPs promoted by graphene/TiO2 nanowires hybrid structure in 3D hydrogel networks†](https://pubs.rsc.org/image/article/2020/ra/d0ra03449e/d0ra03449e-f11.gif)
Efficient adsorption and full spectrum photocatalytic degradation of low concentration PPCPs promoted by graphene/TiO2 nanowires hybrid structure in 3D hydrogel networks†
![Ti-superoxide catalyzed oxidative amidation of aldehydes with saccharin as nitrogen source: synthesis of primary amides†](https://pubs.rsc.org/image/article/2020/RA/c9ra10413e/c9ra10413e-s3.gif)
Ti-superoxide catalyzed oxidative amidation of aldehydes with saccharin as nitrogen source: synthesis of primary amides†