Answer:
(a) 1.87×10⁶ V/m
(b) 1.12 mm closer
Explanation:
(a)
Electric Field = Electric potential/distance.
E = V/d ................... Equation 1
Where E = Electric Field, V = Electric potential, d = distance.
Given: V = 5575 V, d = 2.98 mm = 0.00298 m.
Substitute into equation 1
E = 5575/0.00298
E = 1.87×10⁶ V/m
(b)
without exceeding the breakdown strength,
make d the subject of equation 1
d = V/E.............. Equation 2
Given: E = 3×10⁶ V/m, V = 5575 V
Substitute into equation 2
d = 5575/3000000
d = 1.86 mm.
the plate will be = 2.98-1.86 = 1.12 mm closer
Answer:
Explanation:
Initial velocity u = -1.1 i m /s ( along - ve direction )
final velocity = - 13.9 j
change in velocity = -13.9 j + 1.1 i
rate of change of velocity
acceleration
= (-13.9 j + 1.1 i) / 1.2
= -11.58 j + 0.916 i
x component
= 0.916 m /s²
y component
= - 11.58 m / s²
c) the total cost of running all of the appliances non-stop for 5 days if the electricity rate is $0.1 per KW-Hr.
Answer:
(a) %a, 10 A, 0.833 A
(b) 12 ohm
(c) $22.8
Explanation:
Power of toaster, P1 = 600 W
Power of iron, P2 = 1200 W
Power of bulb, P3 = 100 W
V = 120 V
As they are in household circuit, so they are connected in parallel, so the voltage is same for all.
(a) Use the formula P = V x i
Current in toaster, i1 = P1 / V = 600 / 120 = 5 A
Current in iron, i2 = P2 / V = 1200 / 120 = 10 A
Current in bulb, i3 = P3 / V = 100 / 120 = 0.833 A
(b) Resistance of heating element of iron is R2.
V = i2 x R2
120 = 10 x R2
R2 = 12 ohm
(c) Total energy consumed in 24 hours for 5 days
= (600 + 1200 + 100) x 24 x 5 = 228000 Wh = 228 KWh
Cost of 1 KWh = $0.1
Cost of 228 KWh = 0.1 x 228 = $22.8
_______________________________
Answer:
(a). Toaster = 5A
Iron = 10A
Bulb = 0.833A
(b). R2 = 12Ω
(c). $ 22.8
_______________________________
Explanation:
Given,
Power of Toaster, P1 = 600W
Power of Iron, P2 = 1200W
Power of Bulb, P3 = 100W
Potential difference = 120V
They all are connected in parallel combination because they all are household circuits so that the voltage is same for all appliances in the circuit.
★Solution of(a)
By using the formula of powerwe can find out the current.
Here, power is directly proportional to the potential difference and electric current flowing through the circuit.
Here,electriccurrent is inversely proportional to the potential differenceandelectric currentisdirectly proportional topower.
Current in Toaster, I1 = P1/V = 600/120 = 5A
Current in Iron, I2 = P1/V = 1200/120 = 10A
Current in Bulb, I3 = P1/V = 100/120 = 0.833A
★Solutionof(b)
Resistance of Heating coil of Iron
By using theformula of Ohm's Law we can find out the resistance of heatingcoil of iron.
Here, the potential difference is directly proportional to the current carrying wire and potential difference is directly proportional to the resistance off the wire present in the Iron.
Here, resistance is directly proportional to the potential difference and resistance is inversely proportional to the electric current.
R=V/I
=> R = 120/10
.°. R = 12Ω
★Solutionof(c)
Total consumption of Energy in 24 hours for 5 days = (600W + 1200W + 100W) × 24 hours × 5 days
= 228000Wh
= 228kWh
When the cost of 1kWh = $ 0.1
So,
The cost of 228 kWh = $ 0.1 × 228 = $ 22.8
_______________________________
Answer:
Explanation:
Given:
The initially the relative velocity of the motorcycle is zero with respect to car.
Now using the equation of motion in the relative quantities:
here:
relative distance of motorcycle with respect to the car
initial relative velocity of the motorcycle with respect to the car
time taken to cover the distance gap from the car.
Answer: 4,438.96m
Explanation:
(kindly find attachment below)
From the attachment below, it can be seen that the resultant displacement and the other 2 displacements form a right angle triangle, with A+B as the hypotenus, 3.2km as the opposite and the displacement B as the adjacent.
By using phythagoras theorem
H² = O² + A²
(5.38)² = (3.20)² + B²
28.944 = 10.24 + B²
B² = 28.944 - 10.24
B² = 18.7044
B = √18.7044
B = 4.439km to meter is 4.439 * 1000 = 4,438. 96m
Answer:
B = 4325 m
Explanation:
Resolving the displacement into x and y components.
Let north = positive y component
East = positive x component
So,
Rx = B
Ry = -3.20 km
Magnitude of the resultant displacement is
R = √(B^2 + (-3.20)^2)
R is given as R = 5.38 km
Making B the subject of formula;
B = √(R^2 - (-3.20)^2)
B = √(5.38^2 - (-3.20)^2)
B = 4.325 km
B = 4325 m
Answer:
3
Explanation:
10⁰ = 1 because anything to the power of 0 is 1.
3×1= 3
Answer:
v = 4.1 m / s
Explanation:
Velocity is defined by the relation
v =
we perform the derivative
v = 4.1 m / s
Another way to find this magnitude is to see that the velocity on the slope of a graph of h vs t
v =
Δx = v Δdt + x₀
h= 4.1 t + 5.5
v = 4.1 m / s
x₀ = 5.5 m
The Speed of a Particle is 4.1 meters per second.
The position of a particle can be represented by a linear equation of the form h(t) = (at + b) where a and b are constants.
In this case, the equation is h(t) = (4.1t + 5.5).
To find the speed of the particle, we can take the derivative of the position equation with respect to time.
The derivative of h(t) is the rate of change of position with respect to time, which represents the velocity of the particle.
In this case, the derivative is 4.1 meters per second.
Therefore, the speed of the particle is 4.1 meters per second.
Learn more about Speed of a Particle here:
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