WEBVTT

00:00.060 --> 00:08.040
So consider this quote we have 40 templates for our rate, each of a single bit, and that addiction

00:08.040 --> 00:13.980
is and we have a select line now since we have more input to select control, signal must have the size

00:13.980 --> 00:14.690
of right.

00:14.710 --> 00:16.410
So that is what we declared over here.

00:16.410 --> 00:20.760
And how could we will again have the same Typekit just anger and discord?

00:21.070 --> 00:21.320
Great.

00:21.810 --> 00:25.930
Now, since this is the combination of OK, so we proceed like this.

00:25.930 --> 00:27.630
So process, right?

00:27.630 --> 00:32.220
And inside the sensitivity list, we need to add, all right.

00:32.220 --> 00:40.250
So we have a b c d OK, which represent our D input and then our control input, which is great.

00:40.260 --> 00:42.840
So this is how we specify the process.

00:42.840 --> 00:48.570
Then we are at a great time since we have started a process and will just be ending our process, right?

00:49.230 --> 00:54.090
Then we try to add the keys right to Keith now.

00:55.090 --> 00:58.030
On the basis of different values of a select signal.

00:58.300 --> 01:00.550
OK, we will be choosing what should be.

01:01.890 --> 01:06.540
Sailed on an output, great, so for this case, the.

01:07.490 --> 01:13.430
Variable, which should be added to the cases saying right now, depending on the different value of

01:13.430 --> 01:17.290
a select, we will be choosing what should be the y value, right?

01:17.300 --> 01:22.540
So case is then we will be ending a rate.

01:22.550 --> 01:24.360
So here we have our data case.

01:24.360 --> 01:26.150
So here we have in data.

01:26.450 --> 01:31.490
Right now, we start adding those so selected of, say, stupid.

01:31.790 --> 01:37.880
Since this using multiple excel to specify the value we need to double rate when zero zero rate.

01:37.890 --> 01:44.820
So when selected as having a value of zero zero, then you need to connect y to it, right?

01:44.840 --> 01:48.980
So this is how we specify then zero zero, then you need to act.

01:48.980 --> 01:57.320
This way will be equal to E right, then it is equal to zero one, right.

01:57.320 --> 02:03.050
In that case, y will be equal to B.

02:03.080 --> 02:05.570
Now you could actually add the multiple steepening rate.

02:05.580 --> 02:07.610
So here we have added a single segment.

02:07.940 --> 02:13.890
You can also add a multiple statement if you want to perform a multiple operation during this great

02:14.540 --> 02:15.230
vein.

02:17.520 --> 02:19.770
We have a value of one zero.

02:19.860 --> 02:20.250
OK.

02:20.880 --> 02:24.060
So in that case, we will be able to see.

02:24.300 --> 02:24.570
Right.

02:25.140 --> 02:28.710
And when we have a value of one one.

02:29.070 --> 02:30.330
In that case?

02:32.020 --> 02:38.740
Why should be equal stewardship, right, so this completes our list for which we want to define the

02:38.750 --> 02:41.020
behavior and in the cases, right?

02:41.380 --> 02:51.070
So how we define the default is so we just tried when others this rate, why will be simply equals to

02:52.300 --> 02:52.590
see.

02:52.890 --> 02:53.170
Right.

02:53.170 --> 02:56.250
So this is how you define the default keys, right?

02:56.350 --> 02:56.620
Right.

02:57.040 --> 02:59.590
So this concludes our key statement now.

03:01.930 --> 03:07.840
So let's just try to invoke an article schematic, right, so we will be going to a right and we will

03:07.840 --> 03:13.320
be going to an art and analysis where we will be running the schematic option, right?

03:13.330 --> 03:17.950
So this will automatically end for the schematic, for the code that we have written, right?

03:18.280 --> 03:18.760
And.

03:20.350 --> 03:25.090
Here we have a forest one moths, which has been invoked, right?

03:25.270 --> 03:30.550
And the select line is connected to the select line of this ideal, saying we have all dirty Typekit

03:30.550 --> 03:31.960
connected to the respective thing.

03:32.200 --> 03:38.470
And if you remember this similar kind of schematic that we have invoked when we are discussing selected

03:38.470 --> 03:40.180
signet students, right?

03:40.390 --> 03:46.810
So the exactly same behavior could be observed with the key statement that we have with the selected

03:47.020 --> 03:48.000
signal statement.

03:48.010 --> 03:53.830
Hence, the good idea will be to work around with a key statement instead of in selected signals because

03:54.070 --> 03:56.770
both of the gives the seam the heat right.

03:57.190 --> 04:02.950
So this is how we utilize the key steeply in, and we know what we're going to do is we will be trying

04:02.950 --> 04:10.870
to implement one of the more frequently used circuit that is binary to seven segment decode array.

04:10.900 --> 04:16.900
So we feed on binary value and that will automatically give us the equal in seven segment value that

04:16.900 --> 04:21.020
could be used to turn on the specific digit on the seventh segment.

04:21.030 --> 04:21.250
This.
