概括
常见酸盐的第三定律 entropies 与摩尔体积线性相关. 这种关系对于含铁和的酸盐不同,为矿物学中值估计提供了一种新方法.
科学领域:
- 矿物学是什么?矿物学是什么?
- 热力学是一种热力学.
- 固态化学 固态化学
背景情况:
- 第三定律是一种基本的热力学属性,对于理解矿物行为的理解至关重要.
- 准确的值数据对于地化学建模和相位平衡计算至关重要.
- 以前的复杂酸盐值估计方法是有限的.
研究的目的:
- 为了研究第三定律和各种酸盐矿物质的摩尔体积之间的关系.
- 开发一个预测模型来估计酸盐 entropies.
- 为了确定含有过渡金属的酸盐在这种关系中的偏差.
主要方法:
- 对一系列酸盐的现有第三定律值数据的编制.
- 计算这些酸盐的摩尔体积.
- 线性回归分析以确定和摩尔体积之间的相关性.
主要成果:
- 观察到Be,Mg,Ca,Zn,Na和K的酸盐的第三定律和摩尔体积之间存在线性相关性.
- 含有Fe和Mn的酸盐,具有未填充的d电子子,表现出明显的关系.
- 建立的相关性为估计正体,元体和框架酸盐的值提供了一种可靠的方法.
结论:
- 在许多常见的酸盐中,体积是第三定律的重要预测因素.
- 像Fe和Mn这样的过渡金属的存在改变了这种预测关系.
- 这项研究为估计矿物质的热力学特性提供了宝贵的工具,有助于地质学和材料科学研究.
相关概念视频
Applications of the Ideal Gas Law: Molar Mass, Density, and Volume
The volume occupied by one mole of a substance is its molar volume. The ideal gas law, PV = nRT, suggests that the volume of a given quantity of gas and the number of moles in a given volume of gas vary with changes in pressure and temperature. At standard temperature and pressure, or STP (273.15 K and 1 atm), one mole of an ideal gas (regardless of its identity) has a volume of about 22.4 L — this is referred to as the standard molar volume.
Estimation of the Physical Quantities
On many occasions, physicists, other scientists, and engineers need to make estimates of a particular quantity. These are sometimes referred to as guesstimates, order-of-magnitude approximations, back-of-the-envelope calculations, or Fermi calculations. The physicist Enrico Fermi was famous for his ability to estimate various kinds of data with surprising precision. Estimating does not mean guessing a number or a formula at random. Instead, estimation means using prior experience and sound...
Heat Capacity: Problem-Solving
The heat capacity of a gas is the amount of heat energy required to raise the temperature of a unit mass of gas by one degree Celsius. It is an important thermodynamic property of gases, and its determination is essential in many industrial and scientific applications. Here are the steps to solve problems related to the heat capacities of gases:
Determine the type of gas: The heat capacity of a gas depends on its molecular structure and the degree of freedom of its molecules. Different types of...
Determine the type of gas: The heat capacity of a gas depends on its molecular structure and the degree of freedom of its molecules. Different types of...
Constant Volume Calorimetry
Calorimeters are useful to determine the heat released or absorbed by a chemical reaction. Coffee cup calorimeters are designed to operate at constant (atmospheric) pressure and are convenient to measure heat flow (or enthalpy change) accompanying processes that occur in solution at constant pressure. A different type of calorimeter that operates at constant volume, colloquially known as a bomb calorimeter, is used to measure the energy produced by reactions that yield large amounts of heat and...
Heat Capacities of an Ideal Gas III
The number of independent ways a gas molecule can move along straight line, rotate, and vibrate is called its degrees of freedom. Supposing d represents the number of degrees of freedom of an ideal gas, the molar heat capacity at constant volume of an ideal gas in terms of d is
Specific Gravity of Aggregate
Aggregates typically contain pores, which can be either permeable or impermeable. Considering the pores in the aggregates, the specific gravity of aggregates is defined in three different forms, namely, bulk or gross specific gravity, apparent specific gravity, and absolute specific gravity.
Bulk or gross specific gravity is calculated by taking the ratio of the mass of aggregates in the saturated surface-dry state to the total volume that includes both the solids and the voids within the...
Bulk or gross specific gravity is calculated by taking the ratio of the mass of aggregates in the saturated surface-dry state to the total volume that includes both the solids and the voids within the...


