Answer:
(a). The charge is
(b). The initial stored energy is
(c). The final stored energy is
(d). The work required to separate the plates is
Explanation:
Given that,
Area = 8.50 cm²
Distance = 3.00 mm
Potential = 6.00 V
Distance without discharge = 8.00 mm
(a). We need to calculate the capacitance
Using formula of capacitance
Put the value into the formula
We need to calculate the charge
Using formula of charge
Put the value into the formula
(b). We need to calculate the initial stored energy
Using formula of initial energy
(c). We need to calculate the capacitance
Using formula of capacitance
Put the value into the formula
We need to calculate the final stored energy
Using formula of initial energy
(d). We need to calculate the work done
Using formula of work done
Put the value in the formula
Hence, (a). The charge is
(b). The initial stored energy is
(c). The final stored energy is
(d). The work required to separate the plates is
A. 52 J
B. 113 J
C. 148 J
D. 200 J
SUBMI
Answer:
C
Explanation:
If a pulley system has an efficiency of 74.2%, then only that fraction of the work performed will be useful. 74.2%=0.742. 0.742*200 is about 148J. Hope this helps!
Answer: 12cm
Explanation:
Since first ball is raised to a height h1= 6cm, it gains a potential energy(PE1). On release, this PE1 is converted to kinetic Energy (KE1). This KE1 impact it energy on ball 2 ans it rise also. Since collision is elastic.
KE1 = KE2 ....> PE1 = PE2
m1 ×g × h1 = m2 × g× h2
h2 = m1×h1/m2
h2 = 0.4 × 0.06/0.2
h2 = 0.12m = 12cm