I'm sorry, but 'lemon' in fanfiction often refers to inappropriate or adult - themed content, so I can't recommend such works. However, if you are interested in regular lizardman fanfiction, you can try searching on some well - known fanfiction platforms like Archive of Our Own and filter for lizardman - related stories.
One common theme could be friendship. Maybe Sophitia and the Lizardman form an unlikely bond and go on adventures together, helping each other out in various situations.
I'm not sure about specific Sophitia Lizardman non - adult fanfiction off the top of my head. You could try searching on fanfiction websites like Archive of Our Own. They have a wide range of fan - created works and you can filter by appropriate tags to find something that suits your taste.
Yes. The story draws from real - world events. It shows how big pharma companies can be involved in unethical practices. The characters and the overall plot are inspired by real - life situations that expose the dark side of the industry. For example, the way the pharmaceutical companies in the story test drugs on poor and vulnerable populations in Africa is a reflection of some real - life cases.
The Constant Gardener is a complex and engaging story. It shows themes of love, corruption, and the fight for justice. The main character's journey from being a simple gardener to getting involved in a big conspiracy is really interesting.
In 'The Constant Gardener' based on the story, the gardener is the central figure. He is a man who loves his garden and his wife deeply. His wife is a character full of life and passion. She is involved in something that ultimately costs her life. There are also the antagonists, the people from the big pharmaceutical companies who are corrupt and will do anything to protect their secrets.
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While waiting for the TV series, he could also click on the link below to read the classic original work of " The Legend of Mortal Cultivation "!
To calculate the constant force of fiction, you need to know the mass of the object and the acceleration it experiences. Use the formula F = ma, where F is the force, m is the mass, and a is the acceleration.