20.1 Magnetic Fields, Field Lines, and Force - OpenStax?

20.1 Magnetic Fields, Field Lines, and Force - OpenStax?

WebIt's used in your washing machines, in your electric drilling machines, and so on. It's the same principle on which our ammeter and voltmeters work, inside which you pass a current and there's a needle that deflects and shows us the reading. But more importantly, this … WebMar 11, 2024 · What happens when a compass needle placed near the current carrying conductor give reason? Magnetic field strength is directly proportional to the amount of current. ii Deflection of the compass needle decreases. Magnetic field strength is inversely proportional to the distance from the wire. action figure knee joint WebStart your trial now! First week only $4.99! arrow_forward Literature guides Concept explainers Writing guide Popular textbooks Popular high school textbooks Popular Q&A Business Accounting Economics Finance Leadership Management Marketing Operations Management Engineering Bioengineering Chemical Engineering Civil Engineering … WebJul 18, 2024 · A compass needle is placed near a current carrying straight conductor. State your observation for the following cases and give reasons for the same in each case. (a) Magnitude of electric current is increased. (b) The compass needle is displaced away from the conductor. (AI 2024) Answer: action figure konan WebFeb 21, 2024 · A compass needle is placed near a current carrying wire. State your observation for the following cases, and give reason for the same in each case : (i) Magnitude of electric current in the wire is increased. (ii) The compass needle is displaced away from the wire. WebThe deflection in the compass needle increases as Magnetic field of the current carrying conductor is directly proportional to current flowing through it. The deflection in the needle decreases as the magnetic field is inversely proportional to … arcgis for mac download WebJun 25, 2024 · Your compass did not react to the wire because the wire by itself emitted no magnetic field. In step 2, when you placed the compass under the wire, the needle deflected because the wire was now carrying an electric current generated by the battery, and current-carrying wires have a magnetic field around them.

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