2023
DOI: 10.3934/math.2023189
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Solving an integral equation vian orthogonal neutrosophic rectangular metric space

Abstract: <abstract><p>In this paper, we introduce the notion of an orthogonal neutrosophic rectangular metric space and prove fixed point theorems. We extend some of the well-known results in the literature. As applications of the main results, we apply our main results to show the existence of a unique solution.</p></abstract>

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Cited by 1 publication
(1 citation statement)
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“…Electrical engineers benefit from complex numbers when they deal with the fact that the current through a circuit element such as a capacitor or inductor is not in phase with the voltage across it, specifically in the solution of electric equations. This type of work is motivated by [5,14,27,39,46]. The electric circuit can be represented by ternary relation, R a resistor has a unit Ohms (Ω), L an inductor has a unit Henry (H) and C a capacitor has a unit Farad (F ) on V source of power in a series circuit measured in Volt (V ).…”
Section: An Application Of R-l-c-circuit In Complex-valued Metric Spacesmentioning
confidence: 99%
“…Electrical engineers benefit from complex numbers when they deal with the fact that the current through a circuit element such as a capacitor or inductor is not in phase with the voltage across it, specifically in the solution of electric equations. This type of work is motivated by [5,14,27,39,46]. The electric circuit can be represented by ternary relation, R a resistor has a unit Ohms (Ω), L an inductor has a unit Henry (H) and C a capacitor has a unit Farad (F ) on V source of power in a series circuit measured in Volt (V ).…”
Section: An Application Of R-l-c-circuit In Complex-valued Metric Spacesmentioning
confidence: 99%