True
Health habit modification is the process that involves various stages. It sometimes takes a longer period of time for the old habits to change and implement the changes as new habits for daily lifestyle.
New habits help people protect from many serious health problems like obesity and diabetes. Some habits, like regular exercise, and eating healthy foods, help people to maintain a healthy lifestyle and protect them from many serious health problems.
People remain healthy and fit if they follow these habits regularly, and they can perform their daily activities with more energy.
The tendency of people to relapse during the modification of health habits is one of the biggest problems.
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Answer:
★ It is a process in which the top fertile layer of soil is lost. Due to soil erosion, the soil becomes less fertile. The top layer of soil is very light which is easily carried away by wind and water. The removal of topsoil by the natural forces is known as soil erosion.
Explanation:
Hope you have a great day :)
Answer:
she could have drink water an hour before she had done her exercise. She shouldn't drink water during her exercise this could cause cramps. Since, she hadn't started her exercise dehydrated she had a great workout.
Answer:
Okay
Explanation:
Human topoisomerase I plays an important role in removing positive DNA supercoils that accumulate ahead of replication forks. It also is the target for camptothecin-based anticancer drugs that act by increasing levels of topoisomerase I-mediated DNA scission. Evidence suggests that cleavage events most likely to generate permanent genomic damage are those that occur ahead of DNA tracking systems. Therefore, it is important to characterize the ability of topoisomerase I to cleave positively supercoiled DNA. Results confirm that the human enzyme maintains higher levels of cleavage with positively as opposed to negatively supercoiled substrates in the absence or presence of anticancer drugs. Enhanced drug efficacy on positively supercoiled DNA is due primarily to an increase in baseline levels of cleavage. Sites of topoisomerase I-mediated DNA cleavage do not appear to be affected by supercoil geometry. However, rates of ligation are slower with positively supercoiled substrates. Finally, intercalators enhance topoisomerase I-mediated cleavage of negatively supercoiled substrates but not positively supercoiled or linear DNA. We suggest that these compounds act by altering the perceived topological state of the double helix, making underwound DNA appear to be overwound to the enzyme, and propose that these compounds be referred to as ‘topological poisons of topoisomerase I’