factors f0r selecting electrode.......a.base metal strength properties b.base metal composition c.welding position d.welding current e.joint design and fit-up f.thickness and shape of base metal and g.service c0nditions and or specification
factors f0r selecting electrode.......a.base metal strength properties b.base metal composition c.welding position d.welding current e.joint design and fit-up f.thickness and shape of base metal and g.service c0nditions and or specification
There are a great many factors that must be considered when buying the perfect pearl such as color. Other factors include size and shape.
There are so many factors that must be considered in structuring organizations. Some of these factors include the size of organization, goal and objectives, policies and so much more.
The electrodes of a cell must be made of conductive materials to allow for the flow of electrons. One electrode must be a source of electrons (anode), while the other electrode must accept electrons (cathode) to complete the circuit and allow current to flow. Additionally, the electrodes must be immersed in an electrolyte that facilitates the movement of ions between the two electrodes.
Cultural factors must be considered when marketing consumer and industrial products.
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geograpic locationmediumnumber of posts
mental capacity misuse overdosage
Weight and dimension of good
permission scope and ownership
Two electrodes are required to make an electrical measurement, such as pH, because a potential difference is created between the electrodes when they are in contact with the solution being measured. The potential difference is then used to calculate the pH of the solution based on the known properties of the electrodes and the solution.
Electrodes must not touch because direct contact can create a short circuit, which may lead to equipment damage, overheating, or inaccurate measurements. Additionally, maintaining a gap between electrodes ensures that the intended electrical current flows through the solution or medium being tested, allowing for proper functioning and reliable results in electrochemical experiments or processes.