Scientists and healthcare professionals continually study different aspects of death to better understand its causes and find ways to prevent or treat the underlying conditions. It is important to note that this list is not exhaustive, and each case of death is unique. Differences between the conformations of ethane are depicted especially clearly in drawings called Newman projections, such as those shown in part (a) in Figure 24.4 'Eclipsed and Staggered Conformations of Ethane'. Metabolic disorders: Conditions like diabetes, kidney failure, or liver disease can disrupt the body's normal metabolic processes, leading to complications that can be fatal. The simplest alkane to have a conformational isomer is ethane. Organ failure: When one or more vital organs, such as the heart, liver, kidneys, or lungs, stop functioning properly, it can result in death if not treated or replaced through transplantation.Ĩ. Neurological disorders: Conditions like Alzheimer's disease, Parkinson's disease, or amyotrophic lateral sclerosis (ALS) can progressively affect the brain and nervous system, leading to death.ħ. Cancer: Uncontrolled growth of abnormal cells can invade and destroy healthy tissue, impairing essential bodily functions and eventually leading to death if left untreated.Ħ. Trauma: Severe injuries, including those from accidents, falls, or violence, can damage vital organs and cause death.ĥ. Infections: Bacterial, viral, or fungal infections can overwhelm the body's immune system, causing organ failure and ultimately leading to death.Ĥ. Respiratory failure: Illnesses such as pneumonia, chronic obstructive pulmonary disease (COPD), or severe asthma can result in the inability to breathe properly, leading to death.ģ. Cardiovascular events: Heart attacks, strokes, or other conditions that disrupt blood flow to vital organs can lead to death.Ģ. Some common scientific explanations for death include:ġ. ![]() ![]() People can die from various causes, and the scientific study of death is known as thanatology.
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