. A patient (60 kg) being treated by a paramedic needs to be intubated, following sedation with ketamine at a dose of 1.5 mg/kg. What dose (in mg) should be administered? a. Using the patient in the previous question: For treatment, a vial of ketamine (200 mg is 2 mL) is diluted to 20 mL for administration. What volume of the diluted ketamine solution should be administered to the patient? (in mL) b. Continuing on: What is the concentration of the ketamine in the original vial in mM? (the molecular weight of ketamine is 237.7 g/mole). give answer asap please
. A patient (60 kg) being treated by a paramedic needs to be intubated, following sedation with ketamine at a dose of 1.5 mg/kg. What dose (in mg) should be administered? a. Using the patient in the previous question: For treatment, a vial of ketamine (200 mg is 2 mL) is diluted to 20 mL for administration. What volume of the diluted ketamine solution should be administered to the patient? (in mL) b. Continuing on: What is the concentration of the ketamine in the original vial in mM? (the molecular weight of ketamine is 237.7 g/mole). give answer asap please
Living By Chemistry: First Edition Textbook
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ChapterU4: Toxins: Stoichiometry, Solution Chemistry, And Acids And Bases
Section: Chapter Questions
Problem SIII7RE
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1. A patient (60 kg) being treated by a paramedic needs to be intubated, following sedation with ketamine at a dose of 1.5 mg/kg. What dose (in mg) should be administered?
a. Using the patient in the previous question: For treatment, a vial of ketamine (200 mg is 2 mL) is diluted to 20 mL for administration. What volume of the diluted ketamine solution should be administered to the patient? (in mL)
b. Continuing on:
What is the concentration of the ketamine in the original vial in mM? (the molecular weight of ketamine is 237.7 g/mole).
give answer asap please
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