force feedback
Ohm's law: Voltage = Current times Resistance Solve: Resistance = Voltage divided by Current So, a device drawing 50ma with 150V has a resistance of 150 / 0.05, or 3000 ohms. p.s. Since power is volts times amps, that device is dissipating 7.5 watts.
Tactile (you physically feel the results.)
It is load resistance RL. It can be any device that can act as a load at the output end. Example : A resistor
Question: Why is computer technology important?Answer: Without computer tecnology, I wouldn't be able to type this, would I?
Digital Subscriber line technology
The technology that sends resistance to the device in response to user actions is called force feedback or haptic feedback technology. It provides tactile sensations to enhance the gaming experience by simulating physical interactions within the game environment.
A triggering mechanism is a device or action that initiates a process or event. It can be a specific condition, event, or signal that sets off a response or action. In the context of technology, a triggering mechanism can be a sensor, a command, or a set of conditions that activates a function or program.
The On/OFF action in UJT is controlled by emitter current
Frequency response is the measure of the frequency of the output a device gives in response to a stimulus that it receives. The frequency response is a characteristic of the device.
The internal resistance of a device is the resistance in ohms of that device. It is the resistance electrons need to overcome before electricity is said to flow.
A device is an example of technology. A null modem cable is a device.
Integrated Device Technology was created in 1980.
Integrated Device Technology's population is 2,200.
Starting resistance in electrical circuits refers to the initial resistance encountered by a device when it is first turned on. This resistance can affect the flow of current and the performance of the device.
Most multimeter are able to measure resistance.
it was a device that used technology
That will depend on the temperature coefficient of resistance of the device, which could be positive (i.e. resistance increases with increasing temperature), negative (i.e. resistance decreases with increasing temperature), or zero (i.e. resistance is unaffected by temperature changes).