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Yanka [14]
3 years ago
11

You are baking and run out of an important ingredient. Rather than fire up the car, you decide to use a bicycle. The store is 1/

2 mile away. Assume your car gets 30 miles to the gallon. If every driver on the planet made a similar decision once per week for a year, approximately how much gas would be saved for that year? (As this is an estimate, you may make the arithmetic easier by assuming a year has 50 weeks rather than 52 weeks. What number do you use for 'every driver on the planet'?) a. 100 million gallons b. 2 billion gallons c. 20,000 gallons d. 200,000 gallons e. 2 million gallons
Physics
1 answer:
blagie [28]3 years ago
8 0

Answer: this one is tough. There is a estimated 1.2 billion drivers to help best I could. I did the math the best I could and didn’t get an answer close to the choices. Just guessing I’d guess C. 20,000 because of logic.

Explanation: I can’t help much but would love to hear how to work this out.

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A Ferris wheel with radius 14.0 m is turning about a horizontal axis through its center. The linear speed of a passenger on the
Marina86 [1]

Answer:

a) The acceleration experimented by the passenger when she passes through the lowest point of her circular motion is: a_{R} = 2.571\,\frac{m}{s^{2}}, \angle = 90^{\circ}.

b) Hence, the acceleration experimented by the passenger when she passes through the highest point of her circular motion is: a_{R} = 2.571\,\frac{m}{s^{2}}, \angle = 270^{\circ}.

c) The Ferris wheel takes 14.646 seconds to make a revolution.

Explanation:

a) An object that rotates at constant angular velocity reports a centripetal acceleration and no tangential acceleration. When passenger passes through the lowest point in her circular motion, centripetal acceleration goes up to the center.

In addition, centripetal acceleration is determined by the following expression:

a_{R} = \frac{v^{2}}{R} (Eq. 1)

Where:

a_{R} - Centripetal acceleration, measured in meters per square second.

v - Linear speed, measured in meters per second.

R - Radius of the Ferris wheel, measured in meters.

If we know that v = 6\,\frac{m}{s} and R = 14\,m, the magnitude of radial acceleration is:

a_{R} = \frac{\left(6\,\frac{m}{s} \right)^{2}}{14\,m}

a_{R} = 2.571\,\frac{m}{s^{2}}

The acceleration experimented by the passenger when she passes through the lowest point of her circular motion is: a_{R} = 2.571\,\frac{m}{s^{2}}, \angle = 90^{\circ}.

b) In the highest point the magnitude of radial acceleration is the same but direction is the opposed to that at lowest point. That is, centripetal acceleration goes down to the center.

Hence, the acceleration experimented by the passenger when she passes through the highest point of her circular motion is: a_{R} = 2.571\,\frac{m}{s^{2}}, \angle = 270^{\circ}.

c) At first we need to calculate the angular velocity of the Ferris wheel (\omega), measured in radians per second, by using the following expression:

\omega = \frac{v}{R} (Eq. 2)

If we know that v = 6\,\frac{m}{s} and R = 14\,m, then the angular velocity of the Ferris wheel is:

\omega = \frac{6\,\frac{m}{s} }{14\,m}

\omega = 0.429\,\frac{rad}{s}

Now we proceed to obtain the period of the Ferris wheel (T), measured in seconds, which is the time needed by that wheel to make on revolution:

T = \frac{2\pi}{\omega} (Eq. 3)

Where \omega is the angular velocity of the Ferris wheel, measured in radians per second.

If we get that \omega = 0.429\,\frac{rad}{s}, then:

T = \frac{2\pi}{0.429\,\frac{rad}{s} }

T = 14.646\,s

The Ferris wheel takes 14.646 seconds to make a revolution.

8 0
3 years ago
HELP PLEASE NO LINKS
Anastaziya [24]

Answer:

  1. point C
  2. point C
  3. C to E
  4. 2
  5. mark me as brainliest ❤️

8 0
3 years ago
Read 2 more answers
Which property of a body resists change from a state of rest or of motion?
jeyben [28]

Answer:

mass

Explanation:

As this is directly related to inertia. Inertia is the property of unit which resists the change of state of rest or motion

7 0
2 years ago
Read 2 more answers
When resistance force is increased on a lever which of the following happens to the effort force?
Sauron [17]
When resistance force on a lever increases, nothing happens automatically. 
But if you want to keep lifting the load, then YOU must increase the force of
your effort in order to make it happen.
8 0
3 years ago
A gas sample is heated from -20.0°C to 57.0°C and the volume is increased from 2.00 L to 4.50 L. If the initial pressure is 0.14
Svetach [21]

Answer:

The answer is e.

Explanation:

We take:

T_{1}=253K

V_{1}=2.00 l

P_{1}=0.14atm

V_{2}=4.50 l

T_{2}=330K

Taking the gas as an ideal gas, we can use the ideal gas law:

\frac{PV}{nRT}

⇒ n=\frac{P_{1}V_{1}}{RT_{1}} ⇒ n=0.013mol

Then:

P_{2}=\frac{nRT_{2}}{V_{2}} ⇒ P_{2}=0.0811 atm

Taking R=0.08205atmL/molK.

5 0
3 years ago
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