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No, it is generally the opposite; the body's responses to hormones are typically slower and longer-lasting compared to the responses to nerve impulses. Hormonal responses can take minutes to hours to develop and may persist for extended periods, while nerve impulses are rapid, occurring within milliseconds and leading to immediate effects. Thus, the nervous system is designed for quick, short-term responses, while the endocrine system regulates longer-term processes.

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Why are hormonal responses generally longer lasting?

because.


Two ways the endocrine system and nervous system are different?

The endocrine system uses hormones to send messages throughout the body, while the nervous system uses electrical impulses. The endocrine system acts more slowly but has longer-lasting effects compared to the rapid responses of the nervous system.


Are hormones secreted in large or small amounts Are they secreted constantly or only based on the bodies demands Are their responses longer and faster or shorter and slower than the nervous system?

Hormones have a wide variety of actions, over a range of concentrations and of varying periods of time. Typically hormones provide a slower response to a stimulus than a nervous response. many hormones require a trigger that has a nervous response. most hormones act over a longer time period, these time periods are not measured in milliseconds as are nervous responses. Hormones are released when required, this means that they can be secreted over prolonged periods of time - for example the growth hormones and sex hormones. or only when needed such as the case for insulin or adrenalin (epinephrine).


What carries out responses?

Responses in an organism are typically carried out by the nervous system and the endocrine system. The nervous system, through neurons, transmits signals that lead to immediate reactions, while the endocrine system releases hormones for longer-lasting effects. Together, they coordinate the organism's response to stimuli, ensuring appropriate actions are taken based on internal and external conditions.


What is classical endocrine signaling?

Classical endocrine signaling refers to the process by which hormones are secreted by endocrine glands directly into the bloodstream, allowing them to travel to distant target organs or tissues to elicit specific physiological responses. This form of signaling is characterized by the release of hormones such as insulin, estrogen, and cortisol, which regulate various bodily functions including metabolism, growth, and stress response. The effects of these hormones can be widespread and long-lasting, as they influence multiple systems throughout the body.


What are differences between hormones and nerves?

Hormones are chemical messengers that travel through the bloodstream to target cells, while nerves are specialized cells that transmit electrical signals between different parts of the body. Hormones tend to have slower and longer-lasting effects, whereas nerve impulses are rapid and short-lived. Hormones are produced by glands such as the pituitary or adrenal glands, while nerves are made up of neurons that form the nervous system.


How are the nervous system and endocrine system different Apex?

The nervous system and endocrine system differ primarily in their modes of communication and speed of response. The nervous system uses electrical impulses and neurotransmitters for rapid communication between neurons, resulting in quick responses to stimuli. In contrast, the endocrine system relies on hormones released into the bloodstream, leading to slower but longer-lasting effects on target organs. Additionally, the nervous system is more localized in its effects, while the endocrine system has a more widespread impact throughout the body.


How long does the effect of a electrical signals the effect of chemical signals tend to last?

The effect of electrical signals in the nervous system is generally rapid but transient, lasting milliseconds to seconds. In contrast, the effect of chemical signals, such as neurotransmitters, can vary in duration from milliseconds to minutes or even longer, depending on factors like receptor binding, signal degradation, and reuptake mechanisms.


Development of male reproductive structures depends on what events?

secretion of male hormones prenatally and lasting into the first few months after birth


What are the 3 significant differences between the type of control the nervous system has over the body?

The nervous system controls rapid, short-term responses such as muscle contractions, while the endocrine system controls slower, long-term processes like growth and metabolism. The nervous system uses electrical impulses to transmit signals quickly, whereas the endocrine system relies on hormones released into the bloodstream for longer-lasting effects. The nervous system directly regulates specific target organs and tissues, while the endocrine system exerts its influence more broadly throughout the body.


Describe how the endocrine and nervous system are related?

The endocrine and nervous system are related because they both work on communication and function. The nervous system provides brief, rapid control by fast moving nerve impulses. The endocrine system works the same way, but provides slow moving, longer lasting control by the way of hormones that are secreted and circulated in the blood. Both systems are connected by the hypothalamus.


How are nervous system and endocrine system related?

The endocrine and nervous system are related because they both work on communication and function. The nervous system provides brief, rapid control by fast moving nerve impulses. The endocrine system works the same way, but provides slow moving, longer lasting control by the way of hormones that are secreted and circulated in the blood. Both systems are connected by the hypothalamus.