Flow discharge is the volume of water passing through a specific point in a river or stream in a given amount of time. The relationship between flow discharge and time is that flow discharge is typically measured in cubic meters per second or cubic feet per second, indicating the volume of water passing a point per unit time. As time increases, the cumulative flow discharge over that period also increases.
An electric discharge is a sudden flow of electricity between two charged points, often resulting in a spark or lightning. An electric current is a continuous flow of electric charge along a conductor, such as a wire. While both involve the movement of electricity, an electric discharge is typically a short-lived event, whereas an electric current is sustained over time.
A hydrograph shows the changing discharge of a stream or river over time. It is created by plotting discharge values against time. Hydrographs provide insight into the flow behavior of a watershed and can be used to analyze flooding events, water resource management, and impacts of land use changes on stream flow.
Discharge velocity refers to the rate at which water flows through a porous medium, such as soil or rock. Seepage velocity, on the other hand, represents the average velocity of water moving through the interconnected void spaces in the porous medium. While discharge velocity focuses on the overall flow rate, seepage velocity gives a more detailed view of how water moves within the porous medium.
The charging time of a capacitor is usually lower than the discharging time because during charging, the voltage across the capacitor is increasing from zero to its maximum value, which initially allows a higher current to flow. During discharging, the voltage across the capacitor is decreasing from its maximum value to zero, resulting in a lower current flow. This difference in current flow affects the time it takes for the capacitor to charge and discharge.
Flow, IS the CORRECT answer..
Not necessarily. The lag time between the center of mass of a storm and peak stream discharge can vary depending on factors such as storm intensity, duration, topography, and soil conditions. In some cases, the peak discharge of a stream can occur before, during, or after the storm event.
An electric discharge is a sudden flow of electricity between two charged points, often resulting in a spark or lightning. An electric current is a continuous flow of electric charge along a conductor, such as a wire. While both involve the movement of electricity, an electric discharge is typically a short-lived event, whereas an electric current is sustained over time.
the relation between frequency and time period is ''t=1/f''
Stream flow, or discharge, is the volume of water that moves over a designated point over a fixed period of time. - Google
Average discharge time for a man lies between 3 and 7 minutes.
gear and clutch relation _ when clutch is disconnect this time gear shifting thats relation
The lag time between peak rainfall and peak discharge on a hydrograph occurs because it takes time for water to travel through the watershed from where it falls as rain to the main channel of a river. Factors like soil type, topography, land use, and drainage patterns influence the flow pathways and the time it takes for water to reach the stream channel.
the time between the heaviest rainfall and the peak discharge
A hydrograph shows the changing discharge of a stream or river over time. It is created by plotting discharge values against time. Hydrographs provide insight into the flow behavior of a watershed and can be used to analyze flooding events, water resource management, and impacts of land use changes on stream flow.
displacement is indirectionly propotional to time .
Discharge velocity refers to the rate at which water flows through a porous medium, such as soil or rock. Seepage velocity, on the other hand, represents the average velocity of water moving through the interconnected void spaces in the porous medium. While discharge velocity focuses on the overall flow rate, seepage velocity gives a more detailed view of how water moves within the porous medium.
Speed is equal to distance divided by time. In physics there is a formula that shows the relation between time, distance and the speed. That v=d/t . Here v is velocity/speed d is the distance and t is the time