Answer: this is a true statement, my loves.
Mountains onto the Plains?
1. design of the teepee
2. use of a horse for transportation
3. opening of trade routes
4. settlement of Europeans
Use of a horse for transportation is the development made it possible for the Comanche to move from the Rocky Mountains onto the Plains. Hence, option B is correct.
The Rocky Mountains of North America stretch for around 3,000 miles, or from northern Alberta and British Columbia in Canada to New Mexico in the United States. In some places, the system is 300 miles or more wide.
Given its soaring panoramas that carry tourists to unprecedented altitudes, Rocky Mountain is not at all surprising that it is renowned across the world for its spectacular views. Longs Peak, the tallest mountain in the park, has a height of 14,259 feet.
Rocky Mountain states including Colorado, Idaho, Montana, Nevada, Utah, and Wyoming, as well as sporadically Arizona and New Mexico. Bear Lake's reflection of Longs Peak as captured by Steve Perry.
Thus, option B is correct.
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Answer:
The answer is "Use of a horse for transportation".
Explanation:
I personaly thought it was "Opening of trade routes" but i was incorrect i also took the test.
? B. It cost millions of dollars.
? C. It was popular with Kikuyu farmers.
D. It brought white settlers to Kenya.
"?" = maybe
An untrue statement about the railroad built from the Kenyan coast to Lake Victoria is that;
C. It was popular with Kikuyu farmers
2) what glacial features formed the north shore beaches?
3).what glacial features formed the south shore beaches?
The orbital angular momentum of the Earth is equal to the product of the mass of the Earth (6.0x 10^24 kg) and its orbital velocity (29.7 km/s) multiplied by its distance from the Sun (1.5x 10^8 km), which results in a magnitude of 3.6x 10^40 kg m^2/s.
The spinning angular momentum of the Earth is equal to the product of its mass (6.0x 10^24 kg) and its angular velocity (7.3x 10^-5 radians/s) multiplied by the square of its radius (6.4x 10^6 m), which results in a magnitude of 3.8x 10^37 kg m^2/s.
a) The magnitude of Earth's orbital angular momentum with respect to the Sun is [ Select ] kg m^2/s. b) The magnitude of its spinning angular momentum is [Select ] kg m^2/s.
To calculate the magnitude of Earth's orbital angular momentum with respect to the Sun, we need to use the formula:
Angular Momentum = Moment of Inertia * Angular Velocity
For Earth's orbital angular momentum, the moment of inertia can be calculated using the formula for a sphere:
Moment of Inertia = (2/5) * mass * radius^2
Substituting the given values:
Moment of Inertia = (2/5) * 6.0 x 10^24 kg * (6.4 x 10^6 m)^2
Next, we need to calculate the angular velocity. The time taken for Earth to complete one revolution around the Sun is known as the orbital period. The orbital period of Earth is approximately 365.25 days or 31,557,600 seconds.
Angular Velocity = 2π / Orbital Period
Substituting the values:
Angular Velocity = 2π / 31,557,600 s
Now, we can calculate the orbital angular momentum:
Orbital Angular Momentum = Moment of Inertia * Angular Velocity
For the spinning angular momentum, we can use the same formula:
Spinning Angular Momentum = Moment of Inertia * Angular Velocity
However, the moment of inertia for spinning angular momentum is different. It depends on the mass distribution of Earth and its axis of rotation. Since Earth is considered a sphere, the moment of inertia for spinning angular momentum can be calculated using the formula mentioned earlier.
Substituting the given values:
Moment of Inertia = (2/5) * 6.0 x 10^24 kg * (6.4 x 10^6 m)^2
Finally, we can calculate the spinning angular momentum:
Spinning Angular Momentum = Moment of Inertia * Angular Velocity
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The area of shoreline that is alternately exposed and submerged is the intertidal zone.
Answer:
The boundary between these two plates is the San Andreas fault. This fault is associated with large scale earthquakes and landslides.
Explanation: