formula


Answer: ML 2 T 3 I -1 is the dimension formula of voltage. A voltage can represent either dissipation or storage of energy, a source of energy or loss. In the static electric field, voltage is defined as the work required to move per unit of charge between two points. Mathematically, it is demonstrated as Voltage = Work Done/ Charge.



The first is a number (n), and the next is a unit (u). Q = nu. For example, the length of an object = 40 cm. The number expressing the magnitude of a physical quantity is inversely proportional to the unit selected. If n 1 and n 2 are the numerical values of a physical quantity corresponding to the units u 1 and u 2, then n 1 u 1 = n 2 u 2.



Voltage, also known as electric pressure, electric tension, or (electric) potential difference, is the difference in electric potential between two points. In a static electric field , it corresponds to the work needed per unit of charge to move a test charge between the two points.



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Download NCERT Books Formula Bank for Class 12 Electric current refers to the movement of electrons through a wire. Amperes are the unit of current. The circuit must be closed in order for the charge to flow through it. The circuit must have a continuous path from the power supply to the circuit.



Excel makes it easy for users to format a cell based on the value of that cell, and the built-in conditional formatting rules use this logic. When we want to format a cell based on the value in a different cell, we’ll need to use a formula to define the conditional formatting rule.



Data marker on a chart are linked to data points in a worksheet, therefore, 📌. when you use the fill effects in the format data series dialog box, you can not. 📌. To insert three columns between columns D and E you would. 📌. To create a formula, you first: 📌. You can use the formula palette to.



The ejection fraction is the fraction of the end-diastolic volume that is ejected with each beat; that is, it is stroke volume (SV) divided by end-diastolic volume (EDV): E F ( % ) = S V E D V × 100 {\displaystyle EF(\%)={\frac {SV}{EDV}}\times 100}



It can be represented mathematically by the following equation: CO = HR × SV SV is normally measured using an echocardiogram to record EDV and ESV, and calculating the difference: SV = EDV – ESV. SV can also be measured using a specialized catheter, but this is an invasive procedure and far more dangerous to the patient.



The stroke volume is derived from the difference between end-diastolic (EDV) and end-systolic volumes (ESV) as: SV = EDV – ESV [mL] The stroke volume index (SVI) can be calculated in the same fashion or calculated from stroke volume as: SVI = SV/BSA [mL/m 2]



Q = AV, where Q is discharge (volume/unit time-e.g. m 3 /second, also called cumecs), A is the cross-sectional area of the stream (e.g. m 2 ), and V is the average velocity (e.g. m/s). Stream water velocity is typically measured using a current meter.



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