100 Examples of sentences containing the common noun "volt"

Definition

"Volt" is a unit of measurement for electric potential, electric potential difference, or electromotive force in the International System of Units (SI). It is named after the Italian physicist Alessandro Volta. One volt is defined as the potential difference that would move one coulomb of electric charge with one joule of energy.

Synonyms

  • Electric potential
  • Voltage
  • Electromotive force

Antonyms

  • Ground (in the context of electric potential)

Examples

  1. The battery provides a volt to power the device.
  2. To measure the volt, you need a multimeter.
  3. The circuit requires a minimum of five volts to operate.
  4. The technician adjusted the volt settings on the generator.
  5. Each light bulb needs a specific volt to function properly.
  6. The solar panel generates a high volt output.
  7. They measured the volt across the capacitor.
  8. The electric car runs efficiently on 400 volts.
  9. The volt has a direct impact on the performance of electrical appliances.
  10. She noticed a spike in the volt reading during the storm.
  11. The new charger outputs 12 volts.
  12. The power supply is rated at 240 volts.
  13. A typical household outlet provides 120 volts.
  14. The engineer calculated the required volt for the project.
  15. He used a voltmeter to check the volt level.
  16. The volt can be affected by temperature changes.
  17. To ensure safety, always check the volt before touching wires.
  18. The experiment required a stable volt source.
  19. The volt rating on the device was too low for the application.
  20. They upgraded the transformer to increase the volt output.
  21. The volt fluctuated during peak usage times.
  22. It is essential to know the volt limits of your equipment.
  23. The volt was too high, causing the circuit to blow.
  24. You can convert the volt using a transformer.
  25. The technician calibrated the volt settings on the oscilloscope.
  26. A higher volt value means more energy transfer.
  27. The volt load was distributed evenly across the circuit.
  28. The volt surge damaged several electronic components.
  29. The volt was measured in a series circuit.
  30. The power grid delivers a consistent volt supply.
  31. She was surprised by the drop in volt during the test.
  32. The volt output from the solar inverter was impressive.
  33. We need to monitor the volt levels regularly.
  34. The volt can influence the lifespan of electrical devices.
  35. He adjusted the volt regulator for better performance.
  36. The electric fence operates at a lethal volt.
  37. The technician explained how to safely handle high volt systems.
  38. The volt drop across the resistor was calculated.
  39. The design requires a specific volt configuration.
  40. They installed a new volt meter in the lab.
  41. Understanding the volt is crucial for electrical engineers.
  42. The volt can be measured in direct current (DC) or alternating current (AC).
  43. The volt output was within the acceptable range.
  44. The volt is an essential concept in physics and engineering.
  45. The voltage drop was significant, indicating a problem in the circuit.
  46. The volt rating on the device was exceeded.
  47. A volt is related to the current and resistance in a circuit.
  48. The technician noted the volt fluctuations during peak hours.
  49. The volt was too low to power the appliance.
  50. They documented the volt levels in the maintenance log.
  51. The volt was stabilized by using capacitors.
  52. He explained how to read the volt scale on the meter.
  53. The volt across the load was measured at 5 volts.
  54. The volt will drop if the current increases significantly.
  55. The new battery provides a stable volt output for longer durations.
  56. The volt characteristics were analyzed for efficiency.
  57. The circuit was designed to handle up to 480 volts.
  58. They tested the volt under various conditions.
  59. The volt levels were too high, leading to circuit failures.
  60. The volt source was disconnected for safety.
  61. The volt across the terminals indicated a full charge.
  62. He learned how to calculate the volt in his physics class.
  63. The volt was measured before and after the load was applied.
  64. The volt readout was critical for troubleshooting.
  65. The engineer provided a detailed analysis of the volt levels.
  66. The volt supply was interrupted during maintenance.
  67. They monitored the volt in real-time using sensors.
  68. The volt measurement was crucial for the experiment's success.
  69. The volt output of the generator was consistent.
  70. The volt was too low to start the engine.
  71. Understanding the relationship between volt, current, and resistance is vital.
  72. The volt display showed an accurate reading.
  73. The technician reset the volt parameters.
  74. The volt was stable during the entire testing phase.
  75. The volt regulation was crucial for the equipment's longevity.
  76. They installed a new volt regulator to improve performance.
  77. The volt across the inductor was measured carefully.
  78. High volt lines require special safety precautions.
  79. The volt and ampere readings were logged for analysis.
  80. The volt was critical for determining circuit efficiency.
  81. The volt surge protection was activated during the storm.
  82. He noted the volt changes during the experiment.
  83. The volt output was increased to meet the demand.
  84. The volt was monitored continuously for any irregularities.
  85. The volt supply was restored after the outage.
  86. The volt was tested against industry standards.
  87. The device operates optimally at a specific volt.
  88. They calibrated the volt meter for accuracy.
  89. The volt reading indicated a potential issue with the wiring.
  90. The volt was verified by multiple measurements.
  91. The volt fluctuation could be due to external factors.
  92. Understanding the volt is essential for electrical safety.
  93. The volt measurements were consistent across all tests.
  94. The volt was within the safe operating range.
  95. They replaced the faulty component to stabilize the volt.
  96. The volt needed to be adjusted for the new equipment.
  97. The volt reading was critical for the project's success.
  98. The volt output was monitored during the testing phase.
  99. The volt was stabilized using advanced technology.
  100. The technician explained the importance of maintaining proper volt levels.