Calculations Involving Millimoles – PST05208 Pharmaceutics Theory and Compounding
NTA Level 5 • Semester 2 • PST05208 Calculations Involving Millimoles Pharmaceutics Theory and Compounding • Source Session/Topic 16 Full source-text version: all educational wording from the extracted learning source is retained; only presenter/tutor metadata and web-layout noise are removed, while formatting is improved for readability. Session 16: Calculations Involving Millimoles Total Session Time: 120 minutes + 6 hours of Practices Prerequisites • None Learning Tasks By the end of this session students are expected to be able to: • Give overview of calculations involving Millimoles • Perform calculations involving Millimoles Resources Needed: • Flip charts, marker pens, and masking tape • Black/white board, chalk and whiteboard markers • LCD projector and computer • Handout 11.1 Powders and granules for oral administration SESSION OVERVIEW Activity/ Step Time Content Method 1 05 minutes Presentation Introduction, Learning Tasks 2 45minutes Presentation Introduction to Calculations Involving Millimoles 60 minutes Presentation Performing Calculations Involving Millimoles 3 Demonstration 4 05 minutes Presentation Key Points 5 05 minutes Presentation Evaluation 115 SESSION CONTENTS STEP1: Presentation of Session Title and Learning Tasks (5 minutes) READ or ASK students to read the learning tasks and clarify ASK students if they have any questions before continuing STEP 2: Millimoles (45 minutes) • A Millimole (mmol) of an element, a compound, or an ion is its atomic, molecular, or ionic weight respectively e.g. the ionic weight of Ca2+ is 40, therefore, 1 mmol Ca2+ = 40mg calcium • The number of mmol of each ion obtained from a salt in solution depends on the number of each ion in the molecule of the salt. e.g. Sodium chloride (NaCl, mol wt.: 58.5) has 1 Na and 1 Cl in each molecule. Hence 1 mmol NaCl ( 58.5mg) provides 1 mmol Na (23mg) and 1 mmol Cl (35.5mg) • Calcium chloride (CaCl2.2H2O, mol wt.: 147) has 1 Ca2+ and 2Cl in each molecule. Hence 1mmolCaCl2.2H2O (147mg) provides 1 mmol Ca2+ ( 40mg) and 2mmol Cl(71mg) • Therefore the amount of mg salt containing 1 mmol of a specified ion is calculated by the following equation: mg salt containing 1 mmol of specified ion = molecular weight of the salt Number of specified ions in the molecule Example: • How many mg calcium chloride are needed to provide 1 mmol of Ca2+ and 1 mmol of Cl- • mgCaCl2.2H2O containing 1 mmol of Ca2+= 147 = 147 mg 1 • 147mg CaCl2. 2H2O will provide 1 mmol Ca2+ • mgCaCl2.2H2O containing 1 mmol of Cl- = 147 = 73.5mg 2 • 73.5 mg CaCl2. 2H2O will provide 1 mmol Cl- • When g or mg salt are stated the number of mmol can be calculated by simple proportion 116 Example: • How many mmol Cl are obtained from234mg sodium chloride? • 58.5mg NaCl provide 1 mmol Cl-, therefore; 1 == x x = 1 x 234 = 4mmol 58.5 234 58.5 234mg NaCl provide 4 mmol Cl- STEP 3: Calculating Millimoles (60 minutes) Activity: Small Group Discussion ( 40 minutes) DIVIDE students in small manageable groups ASK students to discuss in groups on the following questions • 367mg calcium chloride provide how many mmol Ca2+ and how many mmol Cl-? REFER Students to Pharmaceutical Calculation. 13th Edition by HOWARD C. ANSEL: Chapter 11, for reference ALLOW students to discuss for 20 minutes ALLOW each groups to present for 5 minutes CLARIFY and SUMMARIZE by using the contents below 1mmol Ca2+ = 147 == 147mg 1 Therefore: 1 = x x = 1 x 367 = 2.49 = 2.5 mmol Ca2+ 147 367 147 – 1mmol Cl = 147mg = 73.5mg 2 117 Therefore: 1 = x x = 1 x 367 = 4.99 = 5mmol Cl-73.5 367 73.5 367mg calcium chloride provide 2.5mmol Ca2+ and 5 mmol Cl- STEP 4: Key Points (5 minutes) • A Millimole (mmol) of an element, a compound, or an ion is its atomic, molecular, or ionic weight respectively e.g. the ionic weight of Ca2+ is 40, therefore, 1 mmol Ca2+ = 40mg calcium • The number of mmol of each ion obtained from a salt in solution depends on the number of each ion in the molecule of the salt. e.g. Sodium chloride (NaCl, mol wt.: 58.5) has 1 Na and 1 Cl in each molecule. Hence 1 mmol NaCl ( 58.5mg) provides 1 mmol Na (23mg) and 1 mmol Cl (35.5mg) STEP 5: Evaluation (5 minutes) • What is Millimole (mmol) of an element? STEP 6: Take Home Assignment (15 minutes) Activity: Take home Assignment (15 minutes) ASK each individual student to do the following assignment • Calculate the strength of sodium chloride solution which is iso – osmotic with blood serum and tears ALLOCATE time for students to do the assignment and submit REFER students to recommended references 118 References Ansel, H. C &Stocklosa, M. J. (2001). Pharmaceutical Calculations (11th ed.). Philadelphia, United States: LIPPINCOTT WILLIAMS & WILKINS Ansel, H. C (2010) Pharmaceutical Calculations (13rd ed.). Philadelphia, United States: LIPPINCOTT WILLIAMS & WILKINS Senya, S. S, Mwasha, C.Y, Muyinga, A. M, Amiri,R. I. and Mauga E.A.S.K. (2011) Tanzania Pharmaceutical Handbook (2nd ed.). Dar eS Salaam, Tanzania: School of Pharmaceutical Sciences. Zatz, J.L and Teixeira, M.G. (2005). Pharmaceutical Calculation (4th ed.). New Jersey: John Wiley & Sons, Inc 119 ← Previous TopicNext Topic →View all Pharmaceutics Theory and Compounding topicsOpen Complete Full Notes PDF / OFFLINE NOTES Unataka kutumiwa notes hizi kupitia WhatsApp?Kwa notes zilizopangiliwa vizuri kwa kusoma offline au PDF, bonyeza kitufe hapa chini. Ujumbe wenye Level, Semester, Module na Topic utaandaliwa moja kwa moja.TUMIWA NOTES WHATSAPP WhatsApp: 255620339260