Convert 36 from decimal to binary
(base 2) notation:
Raise our base of 2 to a power
Start at 0 and increasing by 1 until it is >= 36
20 = 1
21 = 2
22 = 4
23 = 8
24 = 16
25 = 32
26 = 64 <--- Stop: This is greater than 36
Since 64 is greater than 36, we use 1 power less as our starting point which equals 5
Work backwards from a power of 5
We start with a total sum of 0:
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 32 = 32
Add our new value to our running total, we get:
0 + 32 = 32
This is <= 36, so we assign our outside coefficient of 1 for this digit.
Our new sum becomes 32
Our binary notation is now equal to 1
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 16 = 16
Add our new value to our running total, we get:
32 + 16 = 48
This is > 36, so we assign a 0 for this digit.
Our total sum remains the same at 32
Our binary notation is now equal to 10
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 8 = 8
Add our new value to our running total, we get:
32 + 8 = 40
This is > 36, so we assign a 0 for this digit.
Our total sum remains the same at 32
Our binary notation is now equal to 100
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 4 = 4
Add our new value to our running total, we get:
32 + 4 = 36
This = 36, so we assign our outside coefficient of 1 for this digit.
Our new sum becomes 36
Our binary notation is now equal to 1001
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 2 = 2
Add our new value to our running total, we get:
36 + 2 = 38
This is > 36, so we assign a 0 for this digit.
Our total sum remains the same at 36
Our binary notation is now equal to 10010
The highest coefficient less than 1 we can multiply this by to stay under 36 is 1
Multiplying this coefficient by our original value, we get: 1 * 1 = 1
Add our new value to our running total, we get:
36 + 1 = 37
This is > 36, so we assign a 0 for this digit.
Our total sum remains the same at 36
Our binary notation is now equal to 100100
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