So, the work done by non-conservative forces on the skier is
.
The work done by non-conservative forces can be determined using the work-energy principle, which states that the net work done on an object is equal to its change in kinetic energy. Mathematically, this can be expressed as:
![\[ W_{\text{net}} = \Delta KE \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/acalpuqq348k1l36htk6mlyxkijpi9k2d3.png)
The change in kinetic energy
is the final kinetic energy
minus the initial kinetic energy
.
![\[ \Delta KE = KE_{\text{final}} - KE_{\text{initial}} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/bvg1jiv30foy82vxgfqqtpnhyp6unuiihc.png)
The kinetic energy of an object is given by the formula:
![\[ KE = (1)/(2) m v^2 \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/g1q53qa19co4s4xebzq2lbpsnd7oy0xo11.png)
where m is the mass of the object and v is its velocity.
1. Calculate the initial kinetic energy
when the skier starts from rest:
![\[ KE_{\text{initial}} = (1)/(2) m v_{\text{initial}}^2 \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/cld9qdr7u7uaqqu5xjoyfnlp1aryac11gv.png)
Since the skier starts from rest,
.
2. Calculate the final kinetic energy
when the skier reaches the bottom of the slope:
![\[ KE_{\text{final}} = (1)/(2) m v_{\text{final}}^2 \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/kzcd3zd4xk87lnl7ojuz1fd9833xovf2vg.png)
3. Calculate the change in kinetic energy
:
![\[ \Delta KE = KE_{\text{final}} - KE_{\text{initial}} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/bvg1jiv30foy82vxgfqqtpnhyp6unuiihc.png)
4. The work done by non-conservative forces
is equal to
(negative because non-conservative forces typically do negative work):
![\[ W_{\text{non-conservative}} = -\Delta KE \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/8r87pramh8y1hytbfs9lp1sdegp2uxin5r.png)
Now, let's substitute the given values:

(starting from rest)

Calculate
.
1. Calculate
:
![\[ KE_{\text{initial}} = (1)/(2) m v_{\text{initial}}^2 \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/cld9qdr7u7uaqqu5xjoyfnlp1aryac11gv.png)
Since the skier starts from rest
,
![\[ KE_{\text{initial}} = (1)/(2) * 71.0 \, \text{kg} * (0 \, \text{m/s})^2 = 0 \, \text{J} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/ncqp17zfpjs5mn1jxdjqxgawbq6wu3p7t2.png)
2. Calculate
:
![\[ KE_{\text{final}} = (1)/(2) m v_{\text{final}}^2 \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/kzcd3zd4xk87lnl7ojuz1fd9833xovf2vg.png)
![\[ KE_{\text{final}} = (1)/(2) * 71.0 \, \text{kg} * (20.2 \, \text{m/s})^2 = 14421.42 \, \text{J} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/16i2a73nzj93ifzhcugyu83al0lyrtmrxf.png)
3. Calculate
:
![\[ \Delta KE = KE_{\text{final}} - KE_{\text{initial}} = 14421.42 \, \text{J} - 0 \, \text{J} = 14421.42 \, \text{J} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/ommj9w132ltmyo87vrazv2sumnhrouybfa.png)
4. Calculate
:
![\[ W_{\text{non-conservative}} = -\Delta KE = -14421.42 \, \text{J} \]](https://img.qammunity.org/2024/formulas/mathematics/high-school/jw2ah9hw1atyihygneuz7k4f69m4toqe46.png)