No, oxygen is not magnetic.
No, hydrogen peroxide is not magnetic. It is a compound made up of hydrogen and oxygen atoms, and it does not have magnetic properties.
oxygen is para magnetic in nature. Due to the presence of 2 unpaired electron ^Py and ^Pz anti bonding orbitals. which account for the para magnetic behavior of oxygen
True. An oxygen molecule typically consists of two oxygen atoms.
No, copper II sulfate is not magnetic because it does not contain any magnetic elements in its chemical composition. Magnetic properties are typically observed in metals like iron, nickel, and cobalt. Copper II sulfate is a compound of copper, sulfur, and oxygen, which do not exhibit magnetic behavior.
Two radioactive isotopes of oxygen are oxygen-15 and oxygen-17. Oxygen-15 is commonly used in positron emission tomography (PET) scans, while oxygen-17 is used in nuclear magnetic resonance (NMR) spectroscopy.
non-magnetic
No, oxygen is not magnetic.
you can travel Magnetic or true courses ie magnetic north and true north. Magnetic north is by way of compass
No, aluminum is not magnetic.
In certain circumstances, yes. Oxygen is paramagnetic, so it is possible to induce a magnetic moment in it by exposing it to an external magnetic field. So basically, liquid oxygen only exhibits its magnetic properties in the presence of a magnetic field.
True magnetic bearing is the angle measured clockwise from true north to a destination point. It takes into account the magnetic declination, which is the difference between true north and magnetic north at a specific location. This type of bearing is important for accurate navigation using a magnetic compass.
when magnetic ribbon reacted with oxygen then it forms a new substance which is known as magnesium oxide[2mgo]
True. The magnetic poles move constantly.
magnetic variation
No, hydrogen peroxide is not magnetic. It is a compound made up of hydrogen and oxygen atoms, and it does not have magnetic properties.
oxygen is para magnetic in nature. Due to the presence of 2 unpaired electron ^Py and ^Pz anti bonding orbitals. which account for the para magnetic behavior of oxygen
magnetic variation