One way to overcome a neuron's refractory period is by using drugs that block potassium channels, such as tetraethylammonium. Another approach is to use drugs that inhibit sodium-potassium pumps, like ouabain, to prevent the restoration of resting membrane potential. Alternatively, drugs that enhance neurotransmitter release, such as calcium channel blockers, can lead to an increased action potential frequency.
If the frequency increases, the wavelength of the wave will decrease while the energy of the wave will increase.
increase. The frequency of a wave is inversely proportional to its period, meaning that as the period decreases, the frequency increases. The relationship between frequency and period is given by the formula: frequency = 1 / period.
Period and frequency are inverse to each other, as period increases frequency decreases. So, to answer this question as the period of the wave decreases its frequency must increase.
The wavelength is inverse to the frequency, meaning the frequency in this case will increase.
When the frequency of a vibrating body becomes equal to its natural frequency, resonance occurs. This causes the amplitude of the vibrations to increase significantly, as the driving frequency reinforces the natural vibration frequency of the body. This can lead to excessive strain and potential damage to the vibrating body if not controlled.
Increase the energy in general.
If the frequency increases, the wavelength of the wave will decrease while the energy of the wave will increase.
frequency x wavelength = speedSo, if you increase frequency, the wavelength decreases, and vice versa.
The threshold may increase until a certain point in which the refractory period is so short that it will not allow for stimulus. Toby G Attending EMT-P school.
increase. The frequency of a wave is inversely proportional to its period, meaning that as the period decreases, the frequency increases. The relationship between frequency and period is given by the formula: frequency = 1 / period.
when the frequency is low , energy will be obviously low. To increase the energy of the signal we need to increase the frequency. This is achieved by multiplying the message signal with the carrier signal (with high frequency).
Period and frequency are inverse to each other, as period increases frequency decreases. So, to answer this question as the period of the wave decreases its frequency must increase.
The wavelength is inverse to the frequency, meaning the frequency in this case will increase.
If you increase the mass of an object, the potential energy will increase.
When the frequency of a vibrating body becomes equal to its natural frequency, resonance occurs. This causes the amplitude of the vibrations to increase significantly, as the driving frequency reinforces the natural vibration frequency of the body. This can lead to excessive strain and potential damage to the vibrating body if not controlled.
Ether can enhance the excitability of nerve cell membranes, leading to a decrease in the threshold for action potential generation. This can result in an increase in the frequency and amplitude of action potentials.
An increase in frequency will result in a higher pitch sound. The sound will be perceived as being "higher" or "squeakier" compared to a lower frequency sound.