May somebody help and explain please with 2 question explain why science is a continuous progression of study and y is the use of the inquiry process a practical way to approach science

I tried but i don't understand

i am a teacher at inaca

really cause your not a teacher +you have no proof its us we can help other students at tecca or as you say TCAH

Sure! I'd be happy to help explain both questions for you.

1. Why is science a continuous progression of study?

Science is a continuous progression of study because our understanding of the natural world is constantly evolving. Through observation, experimentation, and data analysis, scientists continuously gather new information and revise their theories and explanations. This is because science is based on empirical evidence, which means it relies on observations and data to draw conclusions. As new evidence and technologies emerge, scientists are able to gain deeper insights into the phenomena they study. Additionally, scientific knowledge can build upon itself, with new discoveries often leading to further research and exploration. This iterative process encourages the continuous growth and refinement of scientific knowledge.

To understand the continuous progression of science, you can explore various scientific disciplines and their respective research areas. Reading scientific journals and papers, attending scientific conferences or lectures, and following updates from credible scientific institutions can provide you with the latest advancements. By staying informed about ongoing research, you can grasp the iterative nature of scientific progress and witness how new investigations often replace or enhance older theories.

2. Why is the use of the inquiry process a practical way to approach science?

The inquiry process is a practical way to approach science because it promotes active engagement, critical thinking, and meaningful exploration. In scientific inquiry, researchers formulate questions, design experiments or investigations, gather data, analyze results, and draw conclusions. This approach encourages individuals to become active participants in their learning, rather than passive recipients of information. By constantly questioning, exploring, and investigating, scientists are able to discover new knowledge and make scientific advancements.

Engaging in the inquiry process allows scientists to develop a deeper understanding of how things work and the relationships between different variables. It also fosters creativity and innovation, as scientists are encouraged to think outside the box and explore alternative explanations. The inquiry process also helps scientists identify any potential biases or limitations in their research, leading to more reliable results. Moreover, by involving multiple perspectives and collaboration, the inquiry process enables scientists to validate and replicate each other's findings, contributing to the credibility and validity of scientific knowledge.

To apply the inquiry process in practice, you can start by formulating a question that interests you, designing a simple experiment or investigation, collecting and analyzing data, and drawing conclusions based on your findings. By actively engaging in this process, you can gain a firsthand experience of the practicality and effectiveness of using inquiry in science. Additionally, exploring scientific resources that provide guidelines and examples of inquiry-based investigations can further enhance your understanding and ability to apply the inquiry process.

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