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Lattice Centering and Coordination Number02:33

Lattice Centering and Coordination Number

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The structure of a crystalline solid, whether a metal or not, is best described by considering its simplest repeating unit, which is referred to as its unit cell. The unit cell consists of lattice points that represent the locations of atoms or ions. The entire structure then consists of this unit cell repeating in three dimensions. The three different types of unit cells present in the cubic lattice are illustrated in Figure 1.
Types of Unit Cells
Imagine taking a large number of identical...
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Center of Gravity00:58

Center of Gravity

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The center of gravity (COG) of an object is the point where the object's total weight is considered to be concentrated. Knowing the location of the center of gravity is useful when predicting the behavior of a moving object or designing static structures. In a uniform gravitational field, the center of gravity is similar to the center of mass (COM); yet, these two points can be positioned differently. For example, the Moon's center of mass lies very close to its geometric center, but...
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Center of Gravity01:15

Center of Gravity

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The center of gravity is the point at which an object's weight appears to be concentrated and can be used to balance the object perfectly. This point is essential in mechanics as it provides information regarding a body's stability and moments of inertia. The center of gravity does not always have to fall within the shape or boundaries of the body; it may also lie outside the body in certain cases.
To determine its location, the principle of moments can be utilized by dividing the object into...
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Center of Mass00:59

Center of Mass

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The center of mass is the point at which the total mass of an object can be said to be concentrated. It is a fundamental principle in mechanics and physics that applies to all objects regardless of their shape or size. The center of gravity is the point at which an object’s weight appears to be concentrated and can be used to balance the object perfectly.
The knowledge of the center of mass can also help us to describe and predict the motion of objects. For example, when a ball is thrown...
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Anatomy of the Heart01:27

Anatomy of the Heart

120.7K
The human heart is made up of three layers of tissue that are surrounded by the pericardium, a membrane that protects and confines the heart. The outermost layer, closest to the pericardium, is the epicardium. The pericardial cavity separates the pericardium from the epicardium. Beneath the epicardium is the myocardium, the middle layer, and the endocardium, the innermost layer. There are four chambers of the heart: the right atrium, the right ventricle, the left atrium, and the left ventricle.
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Anatomy of the Heart01:20

Anatomy of the Heart

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The heart is a hollow, muscular organ approximately the size of a fist, consisting of four chambers. It is enclosed in the pericardium, a fibrous sac with two layers: the visceral and parietal pericardium, separated by a fluid-filled space containing serous fluid to reduce friction.
The heart has three layers: the innermost endocardium, the muscular myocardium, and the outer epicardium, all working together for optimal cardiac function.
Chambers of the Heart
The heart is made up of four...
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Related Experiment Video

Updated: Feb 14, 2026

Robotic Pancreatoduodenectomy for Pancreatic Head Cancer: a Case Report of a Standardized Technique
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Robotic Pancreatoduodenectomy for Pancreatic Head Cancer: a Case Report of a Standardized Technique

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Anatomy of a Cancer Center Transaction.

Ronald Barkley1, Michael L Blau1

  • 1Cancer Center Business Development Group, Bedford, NH, and Foley & Lardner LLP, Boston, MA.

Journal of Oncology Practice
|February 14, 2018
PubMed
Summary

This article introduces a model for community cancer centers, detailing collaborative structures between oncologists and hospitals. It is the first part of a two-part series on cancer center organization.

Area of Science:

  • Oncology
  • Healthcare Management
  • Community Health

Background:

  • Structuring community-based cancer centers is complex.
  • Collaborative models are essential for integrating cancer care services.
  • Effective partnerships between oncologists and hospitals are key.

Purpose of the Study:

  • To present a model for structuring a community-based cancer center.
  • To explore collaborative arrangements between oncologists and hospitals.
  • To provide a framework for cancer center development.

Main Methods:

  • Descriptive model presentation.
  • Analysis of collaborative structures.
  • Literature review on healthcare partnerships.

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Main Results:

  • One model for community cancer center organization is detailed.
  • The model emphasizes collaboration between oncologists and hospitals.
  • This is the first of a two-part series.

Conclusions:

  • Collaborative models offer a viable structure for community cancer centers.
  • The presented model provides a foundation for developing integrated cancer care.
  • Further research will explore a second model in the subsequent article.