I don't think it's a homework problem. The OP didn't provide the patient's weight in kg so there is no math problem for us to solve anyway. It looks like the OP has figured out the concentration, but doesn't know where to go next. Also asked how to do it for a 60 (micro) and 10 (macro) gtt drip set.
OP, you need to find out how much cc you want to administer per minute, and then convert that to how much gtt you want to administer per minute.
Find out the concentration
100 mg Lidocaine / 100 cc D5W
1 mg = 1,000 mcg
(100 mg Lidocaine / 100 cc D5W) x (1,000 mcg / 1 mcg) Convert to mcg
100,000 mcg / 100 cc D5W
1,000 mcg Lidocaine / 1 cc D5W Simplified
Find out how much cc I want to administer per minute
1,000 mcg Lidocaine / 1 cc D5W = mcg Lidocaine I want to administer per min/ cc I want to administer per min
mcg Lidocaine I want to administer per min = 20 mcg x pt's weight in kg
1,000 mcg Lidocaine / 1 cc D5W = (20 mcg x pt's weight in kg) / cc I want to administer per min
1,000 mcg Lidocaine x cc I want to administer per min = (20 mcg x pt's weight in kg) x 1 cc D5W Cross multiplied
(1,000 mcg Lidocaine x cc I want to administer per min) / 1,000 mcg = ((20 mcg x pt's weight in kg) x 1 cc D5W) / 1,000 mcg Isolate "cc I want to administer per min"
cc I want to administer per min = ((20 mcg x pt's weight in kg) x 1 cc D5W) / 1,000 mcg
1000 = 20 x 50
cc I want to administer per min = ((20 mcg x pt's weight in kg) x 1 cc D5W) / (20 x 50) mcg
cc I want to administer per min = ((20 x pt's weight in kg) x 1 cc D5W) / 50 Simplified
Convert cc/min I want to administer to gtt/min I want to administer, gtt = drop
cc I want to administer per min x (drip set / 1 cc) = (((20 x pt's weight in kg) x 1 cc D5W) / 50) x (drip set / 1 cc)
cc I want to administer per min x (drip set / 1 cc) = ((20 x pt's weight in kg) x 1 cc D5W x drip set) / 50 cc
x gtt/min = (pt's weight in kg x drip set) / 50 Simplified <-- This can only be used for 100 mg Lidocaine in 100 cc D5W
Example 1
pt's weight in kg = 20 kg, drip set = 60 gtt drip set (a.k.a micro drip set)
x gtt/min = (pt's weight in kg x drip set) / 50
x gtt/min = (20 x 60) / 50
50 = 5 x 10
60 = 6 x 10
20 = 5 x 4
x gtt/min = (5 x 4 x 6 x 10) / (5 x 10)
x gtt/min = 4 x 6 Simplified, got rid of 5 and 10
x gtt/min = 24
24 gtt/min for a 20 kg pt
Example 2
pt's weight in kg = 68 kg (about 150 lbs by the way), drip set = 60 gtt drip set
x gtt/min = (pt's weight in kg x drip set) / 50
x gtt/min = (68 x 60) / 50
60 = 6 x 5 x 2
50 = 5 x 5 x 2
68 = 17 x 2 x 2
x gtt/min = (68 x 6 x 5 x 2) / (5 x 5 x 2)
x gtt/min = (68 x 6) / 5 Simplified, got rid of 5 and 2
x gtt/min = 408 / 5
x gtt/min = 81.6
81.6 gtt/min for a 68 kg pt
Round Down
81 gtt/min for a 68 kg pt
You can always multiply or divide to the drip set you want to use.
For example, if you did the math to find out how much gtt/min you want to administer with a 60 gtt drip set, but you decided to use a 10 gtt drip set for some odd reason, to go from 60 to 10, you divide by 6. The same for the gtt/min. Same thing.
Example 1
You want to use a 10 gtt drip set (a.k.a a macro drip set)
24 gtt/min with a 60 gtt drip set
60 drip set / 10 gtt drip set = 6
24/6 = 4 gtt/min with a 10 gtt drip set
Example 2
You want to use a 15 gtt drip set (a.k.a another macro drip set I see).
24 gtt/min with a 60 gtt drip set
60 drip set / 15 gtt drip set = 4
24/4 = 6 gtt/min with a 15 gtt drip set
Example 3
You want to use a 20 gtt drip set (a.k.a another macro drip set I see).
24 gtt/min with a 60 gtt drip set
60 drip set / 20 gtt drip set = 3
24/3 = 8 gtt/min with a 20 gtt drip set