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Purpose: WordPress is a popular content management system. Almost half of the internet websites are built using WordPress. It stores data as a post inside its database. It has a built-in post type where a programmer or developer can quickly build a post. But sometimes it does not fulfill our requirements. We need to customize the available posts by adding additional fields. Another way is to create a custom post type from scratch. Sometimes, we are not encouraged to implement custom post types due to the lack of practical or lengthy documentation. Here, we provide practical-oriented documentation so researchers can quickly build custom post types into their projects. The CPT module code is freely available to download and use. Design/Methodology/Approach: We install WordPress websites locally using a “local” application. Inside the plugin folder, we create a folder named “custom-post-type.” Inside the folder, we make a file “index.php.” We add our code inside the file so that when the website refreshes, it establishes a plugin automatically. Findings/Result: WordPress's custom post type is an outstanding feature. Where the default post type cannot provide proper data structure, the custom post type allows us to fulfill our requirements. We installed a WordPress website using local software and created a custom post. After that, we add data to it. It worked without any issues. Originality/Value: Many documents are available on WordPress's custom post type. Most of those are lengthy and time-consuming to execute. Sometimes, our researcher cannot afford more time to implement the code into their project. So, consuming several hours, we provide the complete practical process in a very concise manner. Paper Type: Experimental-based Research.
Purpose: WordPress is a popular content management system. Almost half of the internet websites are built using WordPress. It stores data as a post inside its database. It has a built-in post type where a programmer or developer can quickly build a post. But sometimes it does not fulfill our requirements. We need to customize the available posts by adding additional fields. Another way is to create a custom post type from scratch. Sometimes, we are not encouraged to implement custom post types due to the lack of practical or lengthy documentation. Here, we provide practical-oriented documentation so researchers can quickly build custom post types into their projects. The CPT module code is freely available to download and use. Design/Methodology/Approach: We install WordPress websites locally using a “local” application. Inside the plugin folder, we create a folder named “custom-post-type.” Inside the folder, we make a file “index.php.” We add our code inside the file so that when the website refreshes, it establishes a plugin automatically. Findings/Result: WordPress's custom post type is an outstanding feature. Where the default post type cannot provide proper data structure, the custom post type allows us to fulfill our requirements. We installed a WordPress website using local software and created a custom post. After that, we add data to it. It worked without any issues. Originality/Value: Many documents are available on WordPress's custom post type. Most of those are lengthy and time-consuming to execute. Sometimes, our researcher cannot afford more time to implement the code into their project. So, consuming several hours, we provide the complete practical process in a very concise manner. Paper Type: Experimental-based Research.
Purpose: Nowadays, due to our unhealthy lifestyle, hypertension is a common and serious issue. We visit the doctor for a regular checkup at specific intervals. The doctor asks for a record of BP to review the medicine. Generally, we write our BP records on paper and carry them to show the doctor. There are a couple of disadvantages in this procedure. At first, most of the time, we did not find our paper at the time of the doctor's visit. Sometimes, the doctor is not able to read the handwriting. The doctor needs more time to estimate the high, low, and average BP record till the last visit. Sometimes, doctors prefer the BP curve. However, this procedure is more challenging. If any one of the events does not happen as expected, the treatment might go wrong. We need a good solution for the above all. We have the strength of various matured technologies. Applying those, we can solve the above situation quickly. Design/Methodology/Approach: Now, the solution is to record our BP data electronically rather than handwritten so that doctors can understand it easily. To store the bp data, we use a database. We will use a cloud database so that it can be accessible from anywhere. We can use a PC or mobile application to enter the BP data. We must enter the current reading whenever we measure BP using the apps. That is it. The application does the rest of the process. Findings/Result: As we describe, the procedure is primarily hectic. To enter bp data by opening is a time-consuming task. However, once familiar to us, it has excellent benefits. Once they adopt it, it will become a user-friendly tool to manage the BP data. Originality/Value: Several procedures are available to store and display the BP record. The smartwatch is a generic device that stores the data inside the application and then displays it according to our needs. However, it has serious drawbacks; in some ranges ( as observed in the high range), it does not provide an accurate value. Here, we are capturing the bp data from a dedicated bp instrument, which we can consider a reliable data source. Our application aims to provide as accurate data as possible to the doctors who need information. So, the application provides actual value to the user. Paper Type: Conceptual Research.
Purpose: Nowadays, many electronic thermometers are available to measure baby fever. There are two types of thermometers. One type needs contact with the body, and the other is contactless. The contact-type thermometer must be touched to the body for a few minutes till the count is steady. Sometimes, our baby is unwilling to keep the thermometer on their body for a long time. Both contact and contactless thermometers are operated manually. The baby's body temperature cannot be captured When the mother or attender sleeps. However, the mother could not measure the temperature without sleeping all night. When the mother sleeps at night, and the baby's fever suddenly goes high, she needs to feed the baby fever medicine or water bath on the baby’s forehead. It would be good if someone continuously measured the temperature and informed us of some abnormal temperature detection. Yes, now we have the solution. We can solve the problem using our IoT technology. We can automatically measure the baby's body temperature even when the mother sleeps. If the temperature is in an abnormal range, the system draws attention, producing an audio and visual alarm. The system reads the temperature in every predefined interval and saves it to the cloud. When we visit the clinic, the doctor generally wants a temperature history. Using this procedure, the temperature graph can be autogenerated. In this research work, we describe a process to measure the baby's body temperature autonomously and make a backup to the cloud. Design/Methodology: we are making the project possible using IoT technology. We are using a contactless temperature sensor MLX90614. The temperature is processed by Arduino Mega and uploaded to the cloud through the Nodemcu using the MQTT protocol. We are saving the data to the WordPress database. Additionally, to extend the device’s functionality, we integrated Alexa. When the mother needs to get the temperature, she must ask Alexa over the voice command. The Alexa will respond to the current body temperature as voice. It is required basically at night when all high-intensity lights are off. Findings/Result: we created the prototype device and ran a proof of concept. The device runs for a couple of weeks. The device worked as expected. For the scope of improvement, we found a couple of points. For example, our device is bulkier due to the prototype; in practice, it is a handy device. The GUI is also more user-friendly. The complete process is automatic, and before the doctor's visit, we need to carry the temperature graph, which can be generated from our C# application. Originality/Value: The medical device, especially for a baby, needs to be designed so that the baby gets a little bit involved. We surfed the net and found most of the automated fever measurement devices use contact type, which creates several complications for the baby when it is attached to the baby’s body. So here, we added a couple of unique approaches to provide more value in our daily lives. We said a contactless temperature sensor so that there is no need for direct contact with the baby’s body. The second one is that it is Alexa-enabled. The temperature can be a voice response if the room has no light, especially at night. The third one is the autogenerated temperature graph, which is very helpful when we go for a doctor's consultation. The above features provide novelty. Type of Paper: Experimental-based Research.
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