consider the motion along the X-direction
X = horizontal displacement = 80 m
= initial velocity along the x-direction = v Cos60
t = time of travel
using the equation
X = t
80 = (v Cos60) (t)
t = 160/v eq-1
consider the motion in vertical direction :
Y = vertical displacement = 20 m
= initial velocity in Y-direction = v Sin60
a = acceleration = - 9.8 m/s²
t = time of travel = 160/v
using the equation
Y = t + (0.5) a t²
20 = (v Sin60) (160/v) + (0.5) (- 9.8) (160/v)²
v = 32.5 m/s
Hello User,
Approximately 32 electrons can be fit in the fourth energy level.
Solution:
2+4+6+10+10=32
The order of the location of each process in the carbon cycle are as follows;
- <u>Ingestion → Decomposition → Fossilization → Combustion </u>
Reasons:
Ingestion; During the ingestion process, the products of the direct Sunlight and photosynthesis, which
are energy rich chemical substances are ingested by herbivores.
Decomposition; The plants and animals die and undergo decomposition.
Fossilization; A long period the decomposed plants and animals manifest
into hard petrified materials, with their parts transformed to fossils.
Combustion; The remains of plants and animals, subjected to heat and
pressure due to compression, as when as bacteria decomposition that
removes several other elements, leaving a carbon and hydrogen rich
sludge that can be processed into fuel used for combustion. The
combustion process produces carbon dioxide which restarts the cycle.
Learn more about the carbon cycle here:
brainly.com/question/8648417
Given data:
Mass of oyster (m) = 25 g,
= 0.025 kg (<em> since 1 Kg = 1000 g)</em>
Height of oyster (h) = 11 m,
determine gravitational potential energy (GPE) = ?
Gravitational potential energy is energy of an object possesses because of its position on the earth. The amount of gravitational potential energy of an object on earth depends on its<em> mass</em> and<em> height </em>from the earth.
Mathematically,
GPE = m. g. h <em>Joules</em>
<em> Where, </em>
<em> </em>GPE =<em> </em>gravitational potential energy,
<em> </em> m = mass of object in Kg,
g = gravitational force in m/s², g = 9.8 m/s²
h = height of the object in meters,
Now substituting all the values in the equation GPE
GPE = 0.025 Kg × 9.8 m/s² × 11 m
= 2.695 J
Gravitational potential energy of the oyster is 2.695 J