Physics, 28.06.2020 02:01 rachelvasky9
Two forces and are applied to an object whose mass is 8.93 kg. The larger force is . When both forces point due east, the object's acceleration has a magnitude of 0.919 m/s2. However, when points due east and points due west, the acceleration is 0.693 m/s2, due east. Find (a) the magnitude of and (b) the magnitude of .
Answers: 1
Physics, 21.06.2019 23:00
Follow these directions and answer the questions. 1. set up the ripple tank as in previous investigations. 2. bend the rubber tube to form a "concave mirror" and place in the ripple tank. the water level must be below the top of the hose. 3. generate a few straight pulses with the dowel and observe the reflected waves. do the waves focus (come together) upon reflection? can you locate the place where the waves meet? 4. touch the water surface where the waves converged. what happens to the reflected wave? 5. move your finger twice that distance from the hose (2f = c of c, center of the curvature) and touch the water again. does the image (the reflected wave) appear in the same location (c of c)? you may have to experiment before you find the exact location. sometimes it is hard to visualize with the ripple tank because the waves move so quickly. likewise, it is impossible to "see" light waves because they have such small wavelengths and move at the speed of light. however, both are examples of transverse waves and behave in the same way when a parallel wave fronts hit a curved surface.
Answers: 1
Physics, 22.06.2019 05:30
An object weighs 40n in air, weighs 20n when submerged in water and 30n when submerged in a liquid of unknown density. what is the density of the liquid?
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Physics, 22.06.2019 14:20
The energy released by a nuclear fusion reaction is produced when
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Physics, 22.06.2019 15:00
Give an example in which the electrical energy changes to light energy
Answers: 1
Two forces and are applied to an object whose mass is 8.93 kg. The larger force is . When both force...
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