Skip to main content
Ch 04: Newton's Laws of Motion
Young & Freedman Calc - University Physics 14th Edition
Young & Freedman Calc14th EditionUniversity PhysicsISBN: 9780321973610당신이 사용하는 게 아니라요?교과서 변경
4장, 문제 15a

A small 8.008.00-kg rocket burns fuel that exerts a time-varying upward force on the rocket (assume constant mass) as the rocket moves upward from the launch pad. This force obeys the equation F=A+Bt2F=A+Bt^2. Measurements show that at t=0t = 0, the force is 100.0100.0 N, and at the end of the first 2.002.00 s, it is 150.0150.0 N. Find the constants AA and BB, including their SI units.

검증된 단계별 안내
1
Step 1: Start by understanding the given force equation F = A + Bt², where A and B are constants to be determined. The force is time-dependent, and we are given two specific values of force at different times: F = 100.0 N at t = 0 and F = 150.0 N at t = 2.00 s.
Step 2: Substitute the first condition (t = 0, F = 100.0 N) into the equation F = A + Bt². Since t = 0, the term Bt² becomes zero, leaving F = A. Therefore, A = 100.0 N. This gives us the value of A in SI units (Newtons).
Step 3: Substitute the second condition (t = 2.00 s, F = 150.0 N) into the equation F = A + Bt². Using the value of A found in Step 2, the equation becomes 150.0 = 100.0 + B(2.00)². Simplify this to solve for B.
Step 4: Rearrange the equation from Step 3 to isolate B. Subtract 100.0 from both sides to get 50.0 = B(4.00). Then divide both sides by 4.00 to find B. The units of B can be determined by analyzing the equation: since F is in Newtons and t² is in seconds², B must have units of N/s².
Step 5: Verify the units of A and B. A is a constant force, so its units are Newtons (N). B is associated with the time-squared term, so its units are N/s². This ensures consistency with the SI unit system.

비슷한 문제에 대한 검증된 영상 답변:

이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
3m
도움이 되었나요?

주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Newton's Second Law of Motion

Newton's Second Law states that the acceleration of an object is directly proportional to the net force acting on it and inversely proportional to its mass. This law is often expressed with the formula F = ma, where F is the net force, m is the mass, and a is the acceleration. Understanding this principle is crucial for analyzing the forces acting on the rocket and determining its motion.
추천 영상:
가이드 코스
06:54
Intro to Forces & Newton's Second Law

Force Equation

The force exerted on the rocket is described by the equation F = A + Bt², where A and B are constants that define how the force changes over time. This equation indicates that the force is not constant but varies with the square of time, which is essential for calculating the values of A and B based on the given conditions at specific time intervals.
추천 영상:
가이드 코스
08:25
Kinematics Equations

SI Units and Dimensional Analysis

SI units are the standard units of measurement used in science, including kilograms (kg) for mass, newtons (N) for force, and seconds (s) for time. Dimensional analysis involves checking the consistency of units in equations to ensure they are valid. In this problem, understanding SI units is necessary for correctly identifying the units of the constants A and B in the force equation.
추천 영상:
가이드 코스
05:00
Dimensional Analysis
관련 실천
교과서 질문

A hockey puck with mass 0.1600.160 kg is at rest at the origin (x=0x = 0) on the horizontal, frictionless surface of the rink. At time t=0t = 0 a player applies a force of 0.2500.250 N to the puck, parallel to the xx-axis; she continues to apply this force until t=2.00t = 2.00 s. If the same force is again applied at t=5.00t = 5.00 s, what are the position and speed of the puck at t=7.00t = 7.00 s?

3225
views
교과서 질문

At the surface of Jupiter's moon Io, the acceleration due to gravity is g=1.81g = 1.81 m/s2. A watermelon weighs 44.044.0 N at the surface of the earth. What is the watermelon's mass on the earth's surface?

2391
views
교과서 질문

A 4.504.50-kg experimental cart undergoes an acceleration in a straight line (the xx-axis). The graph in Fig. E4.134.13 shows this acceleration as a function of time. During what times is the net force on the cart a constant?

1784
views
교과서 질문

A 4.504.50-kg experimental cart undergoes an acceleration in a straight line (the xx-axis). The graph in Fig. E4.134.13 shows this acceleration as a function of time. Find the maximum net force on this cart. When does this maximum force occur?

3283
views
교과서 질문

At the surface of Jupiter's moon Io, the acceleration due to gravity is g=1.81g = 1.81 m/s2. A watermelon weighs 44.044.0 N at the surface of the earth. What would be its mass and weight on the surface of Io?

5445
views
교과서 질문

An astronaut's pack weighs 17.517.5 N when she is on the earth but only 3.243.24 N when she is at the surface of a moon. What is the acceleration due to gravity on this moon?

4411
views