Nominal Mass Approximation

Nominal mass approximation is a chemistry method that estimates a molecule’s mass by adding the integer mass numbers of its constituent atoms, rather than using their precise isotopic masses. The calculation typically assigns whole-number values based on the most abundant isotope of each element, producing an approximate molecular or ion mass in unified atomic mass units. This approach helps chemists rapidly compare possible molecular formulas, interpret mass spectrometry data, and recognize isotope-related peak patterns. Although it does not provide the accuracy of exact-mass calculations, nominal mass remains useful for initial compound identification, spectral interpretation, and teaching the relationship between molecular composition and measured mass.

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JoVE Science Education - Psychology

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2023

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University A common carnival game is to ask people to guess the number of jellybeans packed into a jar. The chances that anyone will get the exact number right are low. But what about the chances that someone will guess 17 or 147,000? Probably even less than the chances of guessing the correct answer; 17 and 147,000 just seem irrational. Why? After all, if the beans cannot be taken out and counted one-at-a-time, how can someone tell that an...

Nominal vs. Real GDP

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2025

Economic growth is a fundamental indicator of a nation's progress, but assessing it requires distinguishing between nominal and real gross domestic product (GDP). While nominal GDP represents the market value of all goods and services produced within a country using current prices, real GDP adjusts for inflation, providing a more accurate measure of economic expansion.The Impact of Inflation on GDPInflation, the general rise in price levels over time, distorts nominal GDP by increasing its...

Transformers with Off-Nominal Turns Ratios

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2024

In scenarios involving parallel transformers with disparate ratings, developing per-unit models requires accommodating off-nominal turns ratios. This situation arises when the selected base voltages are not proportional to the transformer’s voltage ratings. Consider a transformer where the rated voltages are related by the term a. If the chosen voltage bases satisfy a relationship involving term b, term c is defined as the ratio of these bases. This ratio is then substituted into the rated...

Approximate Integration

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2026

In many practical and theoretical contexts, the exact value of a definite integral may be inaccessible. This limitation typically arises when the antiderivative of a function is either unknown or cannot be expressed in a closed mathematical form. Alternatively, it can occur when a function is defined not by a formula but by a finite set of empirical data points, such as those collected during experiments. In these cases, approximate integration techniques provide a valuable solution.One of the...

Linear Approximations

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2026

For a differentiable function of two variables, linear approximation estimates values near a known point by replacing the curved surface with its tangent plane. Consider the function\begin{equation*}f(x,y)=x^2+3y^2\end{equation*}near the point (2, 1). The exact value at this point is f(2, 1) = 22 + 3(1)2 = 4 + 3 = 7.The linear approximation of f(x, y)) near (a, b) is\begin{equation*}L(x,y)=f(a,b)+f_x(a,b)(x-a)+f_y(a,b)(y-b)\end{equation*}First, compute the partial derivatives: fx(x, y) = 2x and...

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