The south pole of the compass needle is attracted to the earth's magnetic north pole situated at the Southern Hemisphere of the earth.
they're magnetically charged and therefore attracted to the North Pole
A magnetic needle aligns itself with the Earth's magnetic field, pointing towards the magnetic north and south poles. The north-seeking end of the needle is attracted to the Earth's magnetic north pole, causing it to come to rest in a north-south position.
A compass works by aligning itself with the Earth's magnetic field. One end of the compass needle is attracted to the Earth's magnetic north pole, which is near the geographical north pole. This alignment allows the compass needle to point north-south accurately.
To determine the poles of a magnetized iron bar, you can use a compass. One end of the bar that attracts the north-seeking end of the compass needle is the north pole of the bar. The opposite end that attracts the south-seeking end of the compass needle is the south pole of the bar.
A compass is a small magnet that aligns itself with the Earth's magnetic field. The north pole of the compass is attracted to the Earth's magnetic south pole, which is located near the geographic North Pole. This is because opposite magnetic poles attract each other, so the north pole of the compass is drawn towards the Earth's magnetic south pole.
To the magnetic north pole
A compass needle aligns with the Earth's magnetic field, which has a north and south pole. The north-seeking end of the magnet is attracted to the Earth's magnetic south pole, causing the needle to point north.
they're magnetically charged and therefore attracted to the North Pole
A compass contains a needle which shows the holder north and south when the needle turns. A compass contains a lightweight magnet and fricitionless bearing to connect with the earths magnetic field otherwise the needle cannot be turned.
The pole of the compass that is attracted to the earth's magnetic north pole must be a south magnetic pole. But here's the thing. In the compass, the south magnetic pole of the needle is marked "N" because that end of the compass needle points to earth's magnetic north. The only way the needle can point to earth's magnetic north is if that end of the needle, the one marked with an "N" on it, is a magnetic south pole. It almost seems counter intuitive, but think it through and it will become clear.
The pole of the compass that is attracted to the earth's magnetic north pole must be a south magnetic pole. But here's the thing. In the compass, the south magnetic pole of the needle is marked "N" because that end of the compass needle points to earth's magnetic north. The only way the needle can point to earth's magnetic north is if that end of the needle, the one marked with an "N" on it, is a magnetic south pole. It almost seems counter intuitive, but think it through and it will become clear.
The needle of a compass is a magnet, and the earth is also a magnet. The side of the compass marked N is attracted to the north pole of the Earth, and the side marked S is attracted to Earth's south pole. The compass will spin to line itself up with the poles it is attracted to. However, if you have other magnets nearby, the compass can spin to line itself up with those instead.
A magnetic needle aligns itself with the Earth's magnetic field, pointing towards the magnetic north and south poles. The north-seeking end of the needle is attracted to the Earth's magnetic north pole, causing it to come to rest in a north-south position.
No, the magnetic needle in a northern hemisphere compass is attracted to the Earth's magnetic North Pole, while in a southern hemisphere compass, it is attracted to the South Pole. This means that compasses designed for each hemisphere will have their markings and adjustments oriented accordingly.
A compass works by aligning itself with the Earth's magnetic field. One end of the compass needle is attracted to the Earth's magnetic north pole, which is near the geographical north pole. This alignment allows the compass needle to point north-south accurately.
To determine the poles of a magnetized iron bar, you can use a compass. One end of the bar that attracts the north-seeking end of the compass needle is the north pole of the bar. The opposite end that attracts the south-seeking end of the compass needle is the south pole of the bar.
A compass needle is essentially a small magnet itself. When you bring a magnet near the compass, the magnetic field of the magnet causes the compass needle to align with the magnetic field lines of the magnet, which is why the needle spins towards the magnet.