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Yes. Cathode rays, otherwise known as electrons, are repelled by a negative charge, and attracted to a positive charge.

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How did JJ Thomson know that the particles in the cathode-ray tube were negatively charged?

They are found to be deflected by electric and magnetic field in the specific direction in which a negatively charged particle would get deflected.


A cathode ray produced in a gas-filled tube is deflected by a magnetic field A wire carrying an electric current can be pulled by a magnetic field A cathode ray is deflected away from a negatively?

A cathode ray in a gas-filled tube is deflected by a magnetic field due to the Lorentz force acting on the charged particles in the ray. A wire carrying an electric current can be pulled by a magnetic field through the interaction of the magnetic field and the moving charges in the wire. A cathode ray is deflected away from a negatively charged object due to the repulsion between the negatively charged object and the negatively charged particles in the cathode ray.


Why are cathode rays deflected away from a negatively charged plate?

Cathode rays are deflected away from a negatively charged plate because they are negatively charged particles themselves. Like charges repel each other, so the negative cathode rays are pushed away from the negative plate.


A cathode ray is deflected away from a negatively charged object What property of the cathode ray is shown by these phenomena?

The property of the cathode ray that is shown in this scenario is that it possesses a negative charge. The deflection away from the negatively charged object is consistent with the repulsion between like charges in an electric field.


Which scientist discovered that cathode rays are made up of negatively charged particles?

J.J. Thomson discovered that cathode rays are made up of negatively charged particles. He conducted experiments using cathode ray tubes and found that the rays were deflected by electric and magnetic fields in a manner consistent with the presence of negatively charged particles.


How are cathode charged?

negatively charged


How do negatively charged plates affect the path of cathode rays?

Negatively charged plates will attract cathode rays, causing them to bend or deflect towards the plates. The extent of the bending will depend on the strength of the electric field between the plates and the voltage applied across them.


How did J.J. Thomson discover negative charges?

J.J. Thomson discovered negative charges by studying cathode rays in a vacuum tube, where he observed that they were deflected by electric and magnetic fields in a way consistent with negatively charged particles. This led him to propose the existence of negatively charged particles, which he later named electrons.


Why cathode rays are negatively charged?

Cathode rays are negatively charged because they are composed of electrons, which have a negative charge. When a high voltage is applied to the cathode in a vacuum tube, electrons are emitted from the cathode and accelerated towards the anode, creating a beam of negatively charged particles known as cathode rays.


What is an an anion?

AnionA negatively charged ion. For further information you can say PANC (Positive Anode and Negative Cathode). This is used in electric cell. Anions attract to Anode and Cations attract to Cathode.


How did Thomson determine that cathode rays are negatively charged?

Thomson observed that cathode rays were deflected by electric and magnetic fields in a manner consistent with them having a negative charge. He measured the charge-to-mass ratio of cathode rays and found it to be the same regardless of the material used for the electrodes, which suggested the charge was a fundamental property of the particles themselves.


How did thomas discover the electron?

J. J. Thomson discovered the electron using an experiment involving cathode rays and a magnetic field. When subjected to the magnetic field, the cathode ray was deflected. If the magnetic field was flipped, the cathode ray was deflected in the opposite direction. This proved that a cathode ray was a stream of negatively charged particles that would later be deemed electrons.