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Related Concept Videos

Toroids01:27

Toroids

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A toroid is a closely wound donut-shaped coil constructed using a single  conducting wire. In general, it is assumed that a toriod consists of  multiple circular loops perpendicular to its axis.
When connected to a supply, the magnetic field generated in the toroid has field lines circular and concentric to its axis. Conventionally, the direction of this magnetic field is expressed using the right-hand rule. If the fingers of the right hand curl in the current direction, the thumb...
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Spherical and Cylindrical Capacitor01:26

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A spherical capacitor consists of two concentric conducting spherical shells of radii R1 (inner shell) and R2 (outer shell). The shells have  equal and opposite charges of +Q and −Q, respectively. For an isolated conducting spherical capacitor, the radius of the outer shell can be considered to be infinite.
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Pie Chart01:04

Pie Chart

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A pie chart (or a pie graph) is a circular graphical chart or a pictorial representation of categorical data. It is divided into slices of pie each indicating numerical proportions. It is also used to show the relative sizes of data in a single chart.
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Graphical and Analytic Representation of Sinusoids01:20

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Analyzing two sinusoidal voltages with equal amplitude and period but different phases on an oscilloscope, an instrument used to display and analyze waveforms, involves a three-step process.
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Polar and Cylindrical Coordinates01:22

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The Cartesian coordinate system is a very convenient tool to use when describing the displacements and velocities of objects and the forces acting on them. However, it becomes cumbersome when we need to describe the rotation of objects. So, when describing rotation, the polar coordinate system is generally used.
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Dynamics Of Circular Motion: Applications01:17

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Suppose a car moves on flat ground and turns to the left. The centripetal force causing the car to turn in a circular path is due to friction between the tires and the road. For this, a minimum coefficient of friction is needed, or the car will move in a larger-radius curve and leave the roadway. Let's now consider banked curves, where the slope of the road helps in negotiating the curve. The greater the angle of the curve, the faster one can take the curve. It is common for race tracks for...
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Rotate or Wrap? Interactive Visualisations of Cyclical Data on Cylindrical or Toroidal Topologies.

Kun-Ting Chen, Tim Dwyer, Benjamin Bach

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    Summary

    Interactive wrapping for bar charts reduces errors in visualizing cyclical data. This technique improves data analysis performance compared to standard or polar charts.

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    Area of Science:

    • Data Visualization
    • Human-Computer Interaction
    • Cognitive Psychology

    Background:

    • Cyclical data presents challenges for linear visualizations due to inherent breaks or 'cuts'.
    • Polar (radial) charts offer continuous representation but may introduce their own perceptual issues.
    • Understanding the impact of visualization design on analytical performance is crucial for effective data representation.

    Purpose of the Study:

    • To investigate the effectiveness of interactively wrapping bar charts for cyclical data.
    • To compare the analytical performance using interactive wrapping against linear and polar bar charts.
    • To explore the generalization of interactive wrapping to other data types and dimensions.

    Main Methods:

    • A crowdsourced, controlled experiment involving 72 participants.
    • Comparison of a novel continuous panning (interactive wrapping) technique with standard linear and polar bar charts.
    • Data collection focused on error rates and analysis performance.

    Main Results:

    • Bar charts employing interactive wrapping demonstrated significantly fewer errors than standard linear or polar charts.
    • The interactive wrapping technique enhances the continuous presentation of cyclical data, mitigating the 'cut' effect.
    • The concept of interactive wrapping shows broad applicability beyond bar charts for various data types.

    Conclusions:

    • Interactive wrapping is a promising technique for improving the visualization and analysis of cyclical data.
    • The study introduces a design space for one- and two-dimensional wrapping, inspired by 3D topologies (cylinder, torus).
    • Interactive wrapping offers a versatile approach applicable to diverse data visualization challenges.