diff --git a/_sources/install.rst.txt b/_sources/install.rst.txt
index 73b4622f..f196591d 100644
--- a/_sources/install.rst.txt
+++ b/_sources/install.rst.txt
@@ -224,7 +224,7 @@ or perpetual license `Purchase License `_
Activate the 5G Toolkit License
-------------------------------
- #. Download the **Central-Hub** shared with you over the email.
+ #. Download the **Central-Hub** from following links:
* `Central Hub for Window `_
* `Central Hub for Linux `_
@@ -235,7 +235,7 @@ Activate the 5G Toolkit License
#. Create an account with Gigayasa.
#. Verify your email
#. Log into the Central-Hub.
- #. Now fetch the License key shared with you over the email.
+ #. Now fetch the License key **shared with you over the email**.
#. Activate your License.
#. If activation is successful, please close the Central-Hub.
#. You are good to go please open the jupyter Notebook and try to "import toolkit5G as tk"
diff --git a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.crc.html b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.crc.html
index 3698e95a..338cfc34 100644
--- a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.crc.html
+++ b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.crc.html
@@ -22,6 +22,7 @@
+
diff --git a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.html b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.html
index ccf2c6b7..415da97b 100644
--- a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.html
+++ b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.crc.html
@@ -22,6 +22,7 @@
+
diff --git a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.html b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.html
index 07358381..d3e7b7a7 100644
--- a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.html
+++ b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.html
@@ -22,6 +22,7 @@
+
diff --git a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.symbolMapping.html b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.symbolMapping.html
index 0e467de4..4d0fbffe 100644
--- a/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.symbolMapping.html
+++ b/api/5G_Toolkit/PhysicalChannels/PBCH/subcomponents/physicalChannels.pbch.components.modulation.symbolMapping.html
@@ -22,6 +22,7 @@
+
@@ -1484,7 +1485,7 @@
The symbols mapper supports “QAM” and “PSK” for the modulation orders as illustrated in table-1. 5G Toolkit utilizes Sionna
for QAM mapping. The application programming interface (API) is similar to that Sionna-mapper
-for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
+for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
Table 20 Table-2: Uplink Reference Signal and its utility
This modules provide interface for implementing the scrambler for PBCH, PDCCH and PDSCH. The implementation details of the
-Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
+Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
The symbols mapper supports “QAM” and “PSK” for the modulation orders as illustrated in table-1. 5G Toolkit utilizes Sionna
for QAM mapping. The application programming interface (API) is similar to that Sionna-mapper
-for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
+for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
Table 15 Table-2: Uplink Reference Signal and its utility
This modules provide interface for implementing the scrambler for PBCH, PDCCH and PDSCH. The implementation details of the
-Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
+Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
The symbols mapper supports “QAM” and “PSK” for the modulation orders as illustrated in table-1. 5G Toolkit utilizes Sionna
for QAM mapping. The application programming interface (API) is similar to that Sionna-mapper
-for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
+for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
Table 10 Table-2: Uplink Reference Signal and its utility
This modules provide interface for implementing the scrambler for PBCH, PDCCH and PDSCH. The implementation details of the
-Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
+Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
The symbols mapper supports “QAM” and “PSK” for the modulation orders as illustrated in table-1. 5G Toolkit utilizes Sionna
for QAM mapping. The application programming interface (API) is similar to that Sionna-mapper
-for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
+for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
Table 25 Table-2: Uplink Reference Signal and its utility
This modules provide interface for implementing the scrambler for PBCH, PDCCH and PDSCH. The implementation details of the
-Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
+Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
This modules provide interface for implementing the scrambler for PBCH, PDCCH and PDSCH. The implementation details of the
-Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
+Scramblers for PDSCH, PDCCH and PBCH are provided in Section 7.3.1.1, 7.3.2.3 and 7.3.3.1 of [3GPPTS38211_Scr].
The symbols mapper supports “QAM” and “PSK” for the modulation orders as illustrated in table-1. 5G Toolkit utilizes Sionna
for QAM mapping. The application programming interface (API) is similar to that Sionna-mapper
-for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.
+for the ease of use. The generation of the symbols is based on [3GPPTS38211_map] Section 5.1 “Modulation mapper”.