2.4 Critical magnetic field

An important characteristic of a superconductor is that its normal resistance is restored if a sufficiently large magnetic field is applied. The nature of this transition to the normal state depends on the shape of the superconductor and the orientation of the magnetic field, and it is also different for pure elements and for alloys. In this subsection we describe the behaviour in the simplest situation; we shall discuss other more complex behaviour in Section 4.

If an increasing magnet
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2.3.1 Perfect diamagnetism

Diamagnetism is due to currents induced in atomic orbitals by an applied magnetic field. The induced currents produce a magnetisation within the diamagnetic material that opposes the applied field, and the magnetisation disappears when the applied field is removed. However, this effect is very small: the magnetisation generally reduces the applied field by less than one part in 105 within the material. In diamagnetic material, B = μμ0H
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2.2 Persistent currents lead to constant magnetic flux

An important consequence of the persistent currents that flow in materials with zero resistance is that the magnetic flux that passes through a continuous loop of such a material remains constant. To see how this comes about, consider a ring of metal, enclosing a fixed area A, as shown in Figure 6a. An initial magnetic field B0 is applied perpendicular to the plane of the ring when the temperature is above the critical temperature of the material from which the rin
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2.1 Zero electrical resistance

In this section we shall discuss some of the most important electrical properties of superconductors, with discussion of magnetic properties to follow in the next section.

The most obvious characteristic of a superconductor is the complete disappearance of its electrical resistance below a temperature that is known as its critical temperature. Experiments have been carried out to attempt to detect whether there is any small residual resistance in the superconducting state. A sensitive t
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1 Superconductivity

Superconductivity was discovered in 1911 by Heike Kamerlingh Onnes (Figure 1) as he studied the properties of metals at low temperatures. A few years earlier he had become the first person to liquefy helium, which has a boiling point of 4.2 K at atmospheric pressure, and this had opened up a new range of temperature to experimental investigation. On measuring the resistance of a small tube filled with mercury, he was astonished to observe that its resistance fell from ~0.1 Ω at a temper
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Learning outcomes

After studying this unit you should be able to do the following:

  • explain the meanings of the newly defined (emboldened) terms and symbols, and use them appropriately;

  • distinguish between perfect conduction and perfect diamagnetism, and give a qualitative description of the Meissner effect;

  • explain how observation of a persistent current can be used to estimate an upper limit on the resistivity of a superconductor, and perform calculations related to
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References

Castells, M. (1997) The Information Age: Economy, Society and Culture, vol. 2, The Power of Identity, Oxford, Blackwell.
Fiske, J. (1993) Introduction to Communication Theory, London and New York, Routledge.
Fuller, S. (1997) Science, Buckingham, Open University Press.
Gibbons, M. (1999) ‘Science's ne
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3.1 Introduction

In 2000, the House of Lords Select Committee on Science and Technology produced an influential report that highlighted the complex and increasingly problematic relationship between contemporary science and society, particularly in the field of biotechnology (House of Lords Select Committee on Science and Technology, 2000). The report argued that many of these concerns were seen by the public to be the result of a perceived lack of transparency in the relationship between science, industry, pu
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1.9 The rock cycle

As you are reading this, rocks are being formed and destroyed on the Earth. Rocks are being heated and squeezed to form new metamorphic rocks; other rocks are melting to form magmas, which eventually cool and solidify as new igneous rocks; and the processes of weathering, erosion, transport and deposition are generating new sediments. The continuous action of rock-forming processes means that (given time) any rock in the Earth's crust will become transformed into new types of rock and that th
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6.9 Summary of Part E


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15 Appendix: multiplication tables

If you want to be able to do division without using a calculator, you need to know by heart what you get if you multiply any two numbers up to 10. All the possible combinations can be shown in a multiplication table (also called a times table), like the one below.

Figure 37
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7.4 Elixirs of the nervous system: neurotrophins

According to Section 7.2 axons obtain an elixir from targets at their synapses.

Confirmation that there is indeed an elixir came from a series of events that reveals how much of science really works. Elmer Bucker, working with Hamburger in the mid-1940s, had removed a limb bud from a chick and replaced it with a tumour from
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2.1 Zero electrical resistance

In this section we shall discuss some of the most important electrical properties of superconductors, with discussion of magnetic properties to follow in the next section.

The most obvious characteristic of a superconductor is the complete disappearance of its electrical resistance below a temperature that is known as its critical temperature. Experiments have been carried out to attempt to detect whether there is any small residual resistance in the superconducting state. A sensitive t
Author(s): The Open University

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Copyright © 2016 The Open University

Darwin Now Awards
Janice Ansine is a recipient of a Darwin Now Award. She is currently working on a variety of projects in Jamaica, looking at contemporary responses to Darwin and Into the historic role of Jamaica in providing material for his research.
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Topic 5: Income Taxation and Labor Supply part 2 | Economics 2450A: Public Economics
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Plastic Electronics
Replacing existing silicon chips with cheap lightweight plastic electronic technology could transform our world. Imagine electronically updated food labels, computers embedded in our armchairs, even contact lenses linking us directly to the Internet to bring us into the age of plastic electronics. Dr Andrew Flewitt and Dr Robert Phaal both from the Department of Engineering and Scott White serial entrepreneur and CEO of Pragmatic Printing talk about the creative partnership forged between diffe
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References

Lewis, G. and Phoenix, A. (2004) ‘Race ‘ethnicity’ and identity’ in Questioning Identity, K. Woodward (ed.), London, Routledge/The Open University.
The Runnymede Bulletin (1999) ‘Black deaths in police custody’, no.319, September, pp.8–9.
Sardar, Z., Ravetz, J. and Van Loon, B. (1999) Introducing Mathematics, Cambridge, Icon Books.

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RVC 50 - Immune-mediated diseases and the role of Regulatory T cells in dogs and humans
A number of diseases arise because the immune system begins to attack the body’s own cells. Here Dr Oliver Garden describes how these diseases arise and his research into the role of a particular type of immune cell, the regulatory T cell, in this phenomenon across species.
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Getting Started: 03 Exploring the Flash interface
Tour the Welcome screen and save files in Flash. Learn the three major parts of the Flash interface: the Stage, the Timeline, and the panels.
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Rule, approach or aid Comment Cases
The literal rule Uses plain ordinary grammatical meaning of words and avoids judicial law making, but can lead to absurd decisions and injustices and assumes unattainable perfection in draftsmanship Fisher v Bell (1960)