Answer:
80 - 32t
Explanation:
The height, h, in terms of time, t, is given as:
h(t) = 650 + 80t − 16t²
Velocity is the derivative of distance with respect to time:
v(t) = dh(t)/dt = 80 - 32t
The velocity of the object as a function of time is given by the derivative of the height function, which is v(t) = 80 - 32t.
The height h(t) of an object is given by the equation h(t) = 650 + 80t − 16t2. To find the velocity v(t), we need to take the derivative of h(t) with respect to time t. Using the power rule, we get:
v(t) = dh/dt = 0 + 80 - 32t.
So, the velocity of the object as a function of time t is v(t) = 80 - 32t.
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Answer:
Explanation:
The potential energy of a system of two charges is given by the expression
Q₁ and Q₂ are two charges and R is distance between the charges.
Given Q₁ = Q₂ = 3.7 X 10⁻⁶ , R = .8 and K = 9 x 10⁹
Putting these values in the equation we have,
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Potential energy = 154.01 x 10⁻³ J
This energy have been spent to bring these repelling two charges at this close distance . The energy spent have been stored as potential energy here which has been calculated.
Answer:
200
Explanation:
The computation of the impedance of the circuit is shown below:
Provided that
RMS voltage = 120 v
Frequency = 60.0 Hz
RMS current = 0.600 A
Based on the above information, the formula to compute the impedance is
where,
And,
Now placing these above values to the formula
So, the impedance of the circuit is
= 200
Answer:
The electric flux remains unchanged
Explanation:
From Gauss law the Electric flux is directly proportional to the number of electric field lines passing through a surface. The number of field lines passing through a surface become if the radius is doubled becomes 1/4th that is when radius of the Gaussian surface is doubled, but at the same time, the surface area has increased 4 times , so the electric flux remains unchanged
Answer:
amplitude = 14 cm; wavelength = 7 cm; period = 12 seconds
Explanation:
Explanation:
The reason for the more concentration of carbon dioxide in the atmosphere of Venus than in the Earth -
On the Earth , most amount of the carbon dioxide is in the ocean water and in sea sediments .
Considering Venus , in the planet Venus , there is no Ocean water , hence , carbon dioxide can not get dissolved into the water , hence , it is found in the atmosphere .
So , the escape velocity for carbon dioxide on Mars is smaller than Venus .