Reference terms from Wikipedia, the free encyclopedia
 

Sociology of scientific ignorance

The sociology of scientific ignorance (SSI) is the study of ignorance in and of science. The most common way is to see ignorance as something relevant, rather than simply lack of knowledge. There are two distinct areas in which SSI is being studied: some focus on ignorance in scientific research, whereas other focus on public ignorance of science. Sociology of scientific ignorance is a complementary field to the sociology of scientific knowledge (SSK).

When studying ignorance in scientific research, the common standpoint is that ignorance can be used as a tool in science. An example of this is blackboxing, which is the notion that it can be beneficial to hide the internal parts of a system, and only make the input and output visible to the user.

Studies of public ignorance of science focuses on how scientific ignorance can affect society, the public view of science, and what can give rise to public ignorance of science. This area is related to public understanding of science.

 
Note:   The above text is excerpted from the Wikipedia article Sociology of scientific ignorance, which has been released under the GNU Free Documentation License.
 

Check out these latest Nanowerk News:

 

Organic molecule pushes LED emission closer to monochromatic light

A boron-rich ladder molecule narrows spontaneous emission, improving color purity while exposing stability challenges inside OLED devices.

Alkali-doped zinc oxide enables rare-earth-free mechanoluminescence

Lithium or sodium substitution turns abundant zinc oxide into a stress-activated near-infrared emitter for self-powered optical sensing.

Cryogenic silicon carbide transistor mimics neuron-like switching

A silicon carbide transistor uses negative differential resistance at millikelvin temperatures to enable low-power local control near quantum processors.

Ballistic electron transport observed in single-crystalline copper thin films

Defect-free copper pathways let electrons travel with less scattering, pointing to ways of reducing resistance in future nanoscale wiring.

Researchers discover piezoelectric effect in diamond membranes

Diamond, long deemed non-piezoelectric, now shows stable voltage generation in ultrathin flexible membranes, unlocking self-powered medical sensors.

On the trail of the missing hydrogen atoms

AI method reconstructs missing hydrogen atom positions in crystal databases, enabling faster, more accurate materials simulations for storage, batteries and other uses.

New method visualizes band structures in finite and curved nanomaterials

A new computational method extracts electronic band structures from finite, imperfect, and curved nanomaterials, linking nano-ARPES measurements with theory.

Light-induced drag reveals new way to control nanoscale motion

Researchers show light can add drag to fluorescent carbon nanotubes in water, revealing quantum friction that may help control nanoscale transport.

Novel nanowire device offers rapid, noninvasive cancer detection

The device selectively captured cancer biomarkers from the blood serum of ovarian cancer patients.

Newly synthesized fullerene material remains metallic even under low temperatures

Robust metallicity in a fullerene-based material challenges conventional electron-behavior theories and may inform future quantum technologies.